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Conserved domains on  [gi|392927445|ref|NP_001257168|]
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LIM/homeobox protein ttx-3 [Caenorhabditis elegans]

Protein Classification

LIM domain-containing protein( domain architecture ID 10871192)

LIM (LIN-11, Isl1 and MEC-3) domain-containing protein; LIM is a small protein-protein interaction domain, containing two zinc fingers

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
Homeodomain pfam00046
Homeodomain;
293-349 1.27e-23

Homeodomain;


:

Pssm-ID: 459649 [Multi-domain]  Cd Length: 57  Bit Score: 92.95  E-value: 1.27e-23
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445  293 KRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRR 349
Cdd:pfam00046   1 RRKRTTFTPEQLEELEKEFQENPYPSAEEREELAAQLGLTERQVKVWFQNRRAKWKR 57
LIM super family cl02475
LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains ...
171-226 1.32e-13

LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


The actual alignment was detected with superfamily member cd09377:

Pssm-ID: 413332  Cd Length: 59  Bit Score: 64.99  E-value: 1.32e-13
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09377    5 CARCHLGISASELVMRARDLVFHLNCFTCATCNKPLTKGDHFGMR-DGLVYCRLHY 59
LIM cd08368
LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains ...
110-163 1.09e-09

LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


:

Pssm-ID: 259829 [Multi-domain]  Cd Length: 53  Bit Score: 53.86  E-value: 1.09e-09
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRADH 163
Cdd:cd08368    1 CAGCGKPIEGRELLRALGKKWHPECFKCAECGKPLG-GDSFYEKDGKPYCEKCY 53
 
Name Accession Description Interval E-value
Homeodomain pfam00046
Homeodomain;
293-349 1.27e-23

Homeodomain;


Pssm-ID: 459649 [Multi-domain]  Cd Length: 57  Bit Score: 92.95  E-value: 1.27e-23
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445  293 KRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRR 349
Cdd:pfam00046   1 RRKRTTFTPEQLEELEKEFQENPYPSAEEREELAAQLGLTERQVKVWFQNRRAKWKR 57
HOX smart00389
Homeodomain; DNA-binding factors that are involved in the transcriptional regulation of key ...
292-348 1.44e-20

Homeodomain; DNA-binding factors that are involved in the transcriptional regulation of key developmental processes


Pssm-ID: 197696 [Multi-domain]  Cd Length: 57  Bit Score: 84.61  E-value: 1.44e-20
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445   292 SKRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYR 348
Cdd:smart00389   1 KRRKRTSFTPEQLEELEKEFQKNPYPSREEREELAKKLGLSERQVKVWFQNRRAKWK 57
homeodomain cd00086
Homeodomain; DNA binding domains involved in the transcriptional regulation of key eukaryotic ...
293-350 2.65e-19

Homeodomain; DNA binding domains involved in the transcriptional regulation of key eukaryotic developmental processes; may bind to DNA as monomers or as homo- and/or heterodimers, in a sequence-specific manner.


Pssm-ID: 238039 [Multi-domain]  Cd Length: 59  Bit Score: 81.14  E-value: 2.65e-19
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*...
gi 392927445 293 KRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRRE 350
Cdd:cd00086    1 RRKRTRFTPEQLEELEKEFEKNPYPSREEREELAKELGLTERQVKIWFQNRRAKLKRS 58
LIM2_Lhx2_Lhx9 cd09377
The second LIM domain of Lhx2 and Lhx9 family; The second LIM domain of Lhx2 and Lhx9 family: ...
171-226 1.32e-13

The second LIM domain of Lhx2 and Lhx9 family; The second LIM domain of Lhx2 and Lhx9 family: Lhx2 and Lhx9 are highly homologous LHX regulatory proteins. They belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Although Lhx2 and Lhx9 are highly homologous, they seems to play regulatory roles in different organs. In animals, Lhx2 plays important roles in eye, cerebral cortex, limb, the olfactory organs, and erythrocyte development. Lhx2 gene knockout mice exhibit impaired patterning of the cortical hem and the telencephalon of the developing brain, and a lack of development in olfactory structures. Lhx9 is expressed in several regions of the developing mouse brain, the spinal cord, the pancreas, in limb mesenchyme, and in the urogenital region. Lhx9 plays critical roles in gonad development. Homozygous mice lacking functional Lhx9 alleles exhibit numerous urogenital defects, such as gonadal agenesis, infertility, and undetectable levels of testosterone and estradiol coupled with high FSH levels. Lhx9 null mice are phenotypically female, even those that are genotypically male. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188763  Cd Length: 59  Bit Score: 64.99  E-value: 1.32e-13
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09377    5 CARCHLGISASELVMRARDLVFHLNCFTCATCNKPLTKGDHFGMR-DGLVYCRLHY 59
COG5576 COG5576
Homeodomain-containing transcription factor [Transcription];
284-371 6.80e-13

Homeodomain-containing transcription factor [Transcription];


Pssm-ID: 227863 [Multi-domain]  Cd Length: 156  Bit Score: 65.92  E-value: 6.80e-13
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 392927445 284 GNGSGSQRSKRMRTSfkHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRRELHdGGRSSSPLCV 363
Cdd:COG5576   45 QDGSSPPKSKRRRTT--DEQLMVLEREFEINPYPSSITRIKLSLLLNMPPKSVQIWFQNKRAKEKKKRS-GKVEQRPGEE 121

                 ....*...
gi 392927445 364 SAPLASMD 371
Cdd:COG5576  122 EADLAKIG 129
LIM cd08368
LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains ...
110-163 1.09e-09

LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


Pssm-ID: 259829 [Multi-domain]  Cd Length: 53  Bit Score: 53.86  E-value: 1.09e-09
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRADH 163
Cdd:cd08368    1 CAGCGKPIEGRELLRALGKKWHPECFKCAECGKPLG-GDSFYEKDGKPYCEKCY 53
LIM smart00132
Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM ...
170-225 5.88e-09

Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM domains bind protein partners via tyrosine-containing motifs. LIM domains are found in many key regulators of developmental pathways.


Pssm-ID: 214528 [Multi-domain]  Cd Length: 54  Bit Score: 51.62  E-value: 5.88e-09
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445   170 CCRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYtmSPQGHLYCHAH 225
Cdd:smart00132   1 KCAGCGKPIYGTERVLRALGKVWHPECFKCATCGKPLSGDTFF--EKDGKLYCKDC 54
LIM smart00132
Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM ...
110-162 1.89e-08

Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM domains bind protein partners via tyrosine-containing motifs. LIM domains are found in many key regulators of developmental pathways.


Pssm-ID: 214528 [Multi-domain]  Cd Length: 54  Bit Score: 50.46  E-value: 1.89e-08
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....
gi 392927445   110 CCLCTFAIVDKEISV-VDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRAD 162
Cdd:smart00132   2 CAGCGKPIYGTERVLrALGKVWHPECFKCATCGKPLS-GDTFFEKDGKLYCKDC 54
LIM pfam00412
LIM domain; This family represents two copies of the LIM structural domain.
110-167 1.20e-07

LIM domain; This family represents two copies of the LIM structural domain.


Pssm-ID: 395333 [Multi-domain]  Cd Length: 57  Bit Score: 48.10  E-value: 1.20e-07
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*...
gi 392927445  110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRADHAKRY 167
Cdd:pfam00412   1 CAGCNRPIYDRELVRALGKVWHPECFRCAVCGKPLT-TGDFYEKDGKLYCKHDYYKLF 57
 
Name Accession Description Interval E-value
Homeodomain pfam00046
Homeodomain;
293-349 1.27e-23

Homeodomain;


Pssm-ID: 459649 [Multi-domain]  Cd Length: 57  Bit Score: 92.95  E-value: 1.27e-23
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445  293 KRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRR 349
Cdd:pfam00046   1 RRKRTTFTPEQLEELEKEFQENPYPSAEEREELAAQLGLTERQVKVWFQNRRAKWKR 57
HOX smart00389
Homeodomain; DNA-binding factors that are involved in the transcriptional regulation of key ...
292-348 1.44e-20

Homeodomain; DNA-binding factors that are involved in the transcriptional regulation of key developmental processes


Pssm-ID: 197696 [Multi-domain]  Cd Length: 57  Bit Score: 84.61  E-value: 1.44e-20
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445   292 SKRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYR 348
Cdd:smart00389   1 KRRKRTSFTPEQLEELEKEFQKNPYPSREEREELAKKLGLSERQVKVWFQNRRAKWK 57
homeodomain cd00086
Homeodomain; DNA binding domains involved in the transcriptional regulation of key eukaryotic ...
293-350 2.65e-19

Homeodomain; DNA binding domains involved in the transcriptional regulation of key eukaryotic developmental processes; may bind to DNA as monomers or as homo- and/or heterodimers, in a sequence-specific manner.


Pssm-ID: 238039 [Multi-domain]  Cd Length: 59  Bit Score: 81.14  E-value: 2.65e-19
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*...
gi 392927445 293 KRMRTSFKHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRRE 350
Cdd:cd00086    1 RRKRTRFTPEQLEELEKEFEKNPYPSREEREELAKELGLTERQVKIWFQNRRAKLKRS 58
LIM2_Lhx2_Lhx9 cd09377
The second LIM domain of Lhx2 and Lhx9 family; The second LIM domain of Lhx2 and Lhx9 family: ...
171-226 1.32e-13

The second LIM domain of Lhx2 and Lhx9 family; The second LIM domain of Lhx2 and Lhx9 family: Lhx2 and Lhx9 are highly homologous LHX regulatory proteins. They belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Although Lhx2 and Lhx9 are highly homologous, they seems to play regulatory roles in different organs. In animals, Lhx2 plays important roles in eye, cerebral cortex, limb, the olfactory organs, and erythrocyte development. Lhx2 gene knockout mice exhibit impaired patterning of the cortical hem and the telencephalon of the developing brain, and a lack of development in olfactory structures. Lhx9 is expressed in several regions of the developing mouse brain, the spinal cord, the pancreas, in limb mesenchyme, and in the urogenital region. Lhx9 plays critical roles in gonad development. Homozygous mice lacking functional Lhx9 alleles exhibit numerous urogenital defects, such as gonadal agenesis, infertility, and undetectable levels of testosterone and estradiol coupled with high FSH levels. Lhx9 null mice are phenotypically female, even those that are genotypically male. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188763  Cd Length: 59  Bit Score: 64.99  E-value: 1.32e-13
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09377    5 CARCHLGISASELVMRARDLVFHLNCFTCATCNKPLTKGDHFGMR-DGLVYCRLHY 59
COG5576 COG5576
Homeodomain-containing transcription factor [Transcription];
284-371 6.80e-13

Homeodomain-containing transcription factor [Transcription];


Pssm-ID: 227863 [Multi-domain]  Cd Length: 156  Bit Score: 65.92  E-value: 6.80e-13
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 392927445 284 GNGSGSQRSKRMRTSfkHHQLRAMKTYFALNHNPDAKDLKQLAAKTNLTKRVLQVWFQNARAKYRRELHdGGRSSSPLCV 363
Cdd:COG5576   45 QDGSSPPKSKRRRTT--DEQLMVLEREFEINPYPSSITRIKLSLLLNMPPKSVQIWFQNKRAKEKKKRS-GKVEQRPGEE 121

                 ....*...
gi 392927445 364 SAPLASMD 371
Cdd:COG5576  122 EADLAKIG 129
LIM cd08368
LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains ...
110-163 1.09e-09

LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


Pssm-ID: 259829 [Multi-domain]  Cd Length: 53  Bit Score: 53.86  E-value: 1.09e-09
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRADH 163
Cdd:cd08368    1 CAGCGKPIEGRELLRALGKKWHPECFKCAECGKPLG-GDSFYEKDGKPYCEKCY 53
LIM cd08368
LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains ...
171-226 3.87e-09

LIM is a small protein-protein interaction domain, containing two zinc fingers; LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


Pssm-ID: 259829 [Multi-domain]  Cd Length: 53  Bit Score: 52.32  E-value: 3.87e-09
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLnREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMspQGHLYCHAHY 226
Cdd:cd08368    1 CAGCGKPI-EGRELLRALGKKWHPECFKCAECGKPLGGDSFYEK--DGKPYCEKCY 53
LIM smart00132
Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM ...
170-225 5.88e-09

Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM domains bind protein partners via tyrosine-containing motifs. LIM domains are found in many key regulators of developmental pathways.


Pssm-ID: 214528 [Multi-domain]  Cd Length: 54  Bit Score: 51.62  E-value: 5.88e-09
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445   170 CCRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYtmSPQGHLYCHAH 225
Cdd:smart00132   1 KCAGCGKPIYGTERVLRALGKVWHPECFKCATCGKPLSGDTFF--EKDGKLYCKDC 54
LIM2_Isl cd09374
The second LIM domain of Isl, a member of LHX protein family; The second LIM domain of Isl: ...
171-224 1.12e-08

The second LIM domain of Isl, a member of LHX protein family; The second LIM domain of Isl: Isl is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Isl1 and Isl2 are the two conserved members of this family. Proteins in this group are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Isl-1 is one of the LHX proteins isolated originally by virtue of its ability to bind DNA sequences from the 5'-flanking region of the rat insulin gene in pancreatic insulin-producing cells. Mice deficient in Isl-1 fail to form the dorsal exocrine pancreas and islet cells fail to differentiate. On the other hand, Isl-1 takes part in the pituitary development by activating the gonadotropin-releasing hormone receptor gene together with LHX3 and steroidogenic factor 1. Mouse Isl2 is expressed in the retinal ganglion cells and the developing spinal cord where it plays a role in motor neuron development. Same as Isl1, Isl2 may also be able to bind to the insulin gene enhancer to promote gene activation. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188760  Cd Length: 55  Bit Score: 50.90  E-value: 1.12e-08
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGhLYCHA 224
Cdd:cd09374    1 CAKCQQSFSKNDFVMRARTKIYHIECFRCSACSRQLIPGDEFALRDDG-LFCKA 53
LIM1_AWH cd09373
The first LIM domain of Arrowhead (AWH); The first LIM domain of Arrowhead (AWH): Arrowhead ...
110-163 1.48e-08

The first LIM domain of Arrowhead (AWH); The first LIM domain of Arrowhead (AWH): Arrowhead belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. During embryogenesis of Drosophila, Arrowhead is expressed in each abdominal segment and in the labial segment. Late in embryonic development, expression of arrowhead is refined to the abdominal histoblasts and salivary gland imaginal ring cells themselves. The Arrowhead gene required for establishment of a subset of imaginal tissues: the abdominal histoblasts and the salivary gland imaginal rings. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188759 [Multi-domain]  Cd Length: 54  Bit Score: 50.45  E-value: 1.48e-08
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEYSDKCYVRDGVFLCRADH 163
Cdd:cd09373    1 CTGCGEPITDRFLLKVSGRSWHVSCLRCCVCQTPLERQPSCFTRDRQIYCKADY 54
LIM smart00132
Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM ...
110-162 1.89e-08

Zinc-binding domain present in Lin-11, Isl-1, Mec-3; Zinc-binding domain family. Some LIM domains bind protein partners via tyrosine-containing motifs. LIM domains are found in many key regulators of developmental pathways.


Pssm-ID: 214528 [Multi-domain]  Cd Length: 54  Bit Score: 50.46  E-value: 1.89e-08
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|....
gi 392927445   110 CCLCTFAIVDKEISV-VDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRAD 162
Cdd:smart00132   2 CAGCGKPIYGTERVLrALGKVWHPECFKCATCGKPLS-GDTFFEKDGKLYCKDC 54
LIM2_AWH cd09379
The second LIM domain of Arrowhead (AWH); The second LIM domain of Arrowhead (AWH): Arrowhead ...
171-226 2.60e-08

The second LIM domain of Arrowhead (AWH); The second LIM domain of Arrowhead (AWH): Arrowhead belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs such as the pituitary gland and the pancreas. During embryogenesis of Drosophila, Arrowhead is expressed in each abdominal segment and in the labial segment. Late in embryonic development, expression of arrowhead is refined to the abdominal histoblasts and salivary gland imaginal ring cells themselves. The Arrowhead gene required for establishment of a subset of imaginal tissues: the abdominal histoblasts and the salivary gland imaginal rings. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188765  Cd Length: 55  Bit Score: 50.11  E-value: 2.60e-08
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09379    1 CAKCSRNISASDWVRRARDHVYHLACFACDACKRQLSTGEEFALI-EDRVLCKAHY 55
LIM pfam00412
LIM domain; This family represents two copies of the LIM structural domain.
110-167 1.20e-07

LIM domain; This family represents two copies of the LIM structural domain.


Pssm-ID: 395333 [Multi-domain]  Cd Length: 57  Bit Score: 48.10  E-value: 1.20e-07
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*...
gi 392927445  110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEySDKCYVRDGVFLCRADHAKRY 167
Cdd:pfam00412   1 CAGCNRPIYDRELVRALGKVWHPECFRCAVCGKPLT-TGDFYEKDGKLYCKHDYYKLF 57
LIM2_LMO4 cd09387
The second LIM domain of LMO4 (LIM domain only protein 4); The second LIM domain of LMO4 (LIM ...
171-222 1.27e-06

The second LIM domain of LMO4 (LIM domain only protein 4); The second LIM domain of LMO4 (LIM domain only protein 4): LMO4 is a nuclear protein that plays important roles in transcriptional regulation and development. LMO4 is involved in various functions in tumorigenesis and cellular differentiation. LMO4 proteins regulate gene expression by interacting with a wide variety of transcription factors and cofactors to form large transcription complexes. It can interact with Smad proteins, and associate with the promoter of the PAI-1 (plasminogen activator inhibitor-1) gene in a TGFbeta (transforming growth factor beta)-dependent manner. LMO4 can also form a complex with transcription regulator CREB (cAMP response element-binding protein) and interact with CLIM1 and CLIM2. In breast tissue, LMO4 interacts with multiple proteins, including the cofactor CtIP [CtBP (C-terminal binding protein)-interacting protein], the breast and ovarian tumor suppressor BRCA1 (breast-cancer susceptibility gene 1) and the LIM-domain-binding protein LDB1. Functionally, LMO4 is shown to repress BRCA1-mediated transcription activation, thus invoking a potential role for LMO4 as a negative regulator of BRCA1 in sporadic breast cancer. LMO4 also forms complex to both ERa (oestrogen receptor alpha), MTA1 (metastasis tumor antigen 1), and HDACs (histone deacetylases), implying that LMO4 is also a component of the MTA1 corepressor complex. Over-expressed LMO4 represses ERa transactivation functions in an HDAC-dependent manner, and contributes to the process of breast cancer progression by allowing the development of Era-negative phenotypes. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188773  Cd Length: 55  Bit Score: 45.17  E-value: 1.27e-06
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 171 CRKC--EIPLNreDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYC 222
Cdd:cd09387    1 CSACgqSIPAS--ELVMRAQGNVYHLKCFTCSTCHNQLVPGDRFHYV-NGSLFC 51
LIM2_Isl2 cd09471
The second LIM domain of Isl2; The second LIM domain of Isl2: Isl is a member of LHX protein ...
171-226 1.98e-06

The second LIM domain of Isl2; The second LIM domain of Isl2: Isl is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Isl proteins are found in the nucleus and act as transcription factors or cofactors. Isl1 and Isl2 are the two conserved members of this family. Mouse Isl2 is expressed in the retinal ganglion cells and the developing spinal cord where it plays a role in motor neuron development. Isl2 may be able to bind to the insulin gene enhancer to promote gene activation. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188855  Cd Length: 55  Bit Score: 44.53  E-value: 1.98e-06
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQgHLYCHAHY 226
Cdd:cd09471    1 CAQCRLGFSSSDLVMRARDSVYHIECFRCSVCSRQLLPGDEFCLREH-ELLCRADH 55
LIM1_Lhx3a cd09466
The first LIM domain of Lhx3a; The first LIM domain of Lhx3a: Lhx3a is a member of LHX protein ...
110-162 3.37e-06

The first LIM domain of Lhx3a; The first LIM domain of Lhx3a: Lhx3a is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx3a is one of the two isoforms of Lhx3. The Lhx3 gene is expressed in the ventral spinal cord, the pons, the medulla oblongata, and the pineal gland of the developing nervous system during mouse embryogenesis, and transcripts are found in the emergent pituitary gland. Lhx3 functions in concert with other transcription factors to specify interneuron and motor neuron fates during development. Lhx3 proteins have been demonstrated to directly bind to the promoters of several pituitary hormone gene promoters. The Lhx3 gene encodes two isoforms, LHX3a and LHX3b that differ in their amino-terminal sequences, where Lhx3a has longer N-terminal. They show differential activation of pituitary hormone genes and distinct DNA binding properties. In human, Lhx3a trans-activated the alpha-glycoprotein subunit promoter and genes containing a high-affinity Lhx3 binding site more effectively than the hLhx3b isoform. In addition, hLhx3a induce transcription of the TSHbeta-subunit gene by acting on pituitary POU domain factor, Pit-1, while hLhx3b does not. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188850 [Multi-domain]  Cd Length: 56  Bit Score: 44.00  E-value: 3.37e-06
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                 ....*....|....*....|....*....|....*....|....*....|...
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIpfEYSDKCYVRDGVFLCRAD 162
Cdd:cd09466    4 CAGCDHPIFDRFILKVQDKPWHSKCLKCVDCQA--QLTDKCFSRGGQVYCKED 54
LIM_Mical_like cd09358
The LIM domain of Mical (molecule interacting with CasL) like family; The LIM domain of Mical ...
185-226 8.98e-06

The LIM domain of Mical (molecule interacting with CasL) like family; The LIM domain of Mical (molecule interacting with CasL) like family: Known members of this family includes LIM domain containing proteins; Mical (molecule interacting with CasL), pollen specific protein SF3, Eplin, xin actin-binding repeat-containing protein 2 (XIRP2) and Ltd-1. The members of this family function mainly at the cytoskeleton and focal adhesions. They interact with transcription factors or other signaling molecules to play roles in muscle development, neuronal differentiation, cell growth and mobility. Eplin has also found to be tumor suppressor. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs.. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188744 [Multi-domain]  Cd Length: 53  Bit Score: 42.64  E-value: 8.98e-06
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|..
gi 392927445 185 MKAKEMIFHHACFVCFICGIKLNPGDYytMSPQGHLYCHAHY 226
Cdd:cd09358   14 LVADGKLFHKSCFRCSHCNKTLRLGNY--ASLEGKLYCKPHF 53
LIM2_Lhx1_Lhx5 cd09375
The second LIM domain of Lhx1 (also known as Lim1) and Lhx5; The second LIM domain of Lhx1 ...
171-226 9.33e-06

The second LIM domain of Lhx1 (also known as Lim1) and Lhx5; The second LIM domain of Lhx1 (also known as Lim1) and Lhx5. Lhx1 and Lhx5 are closely related members of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx1 is required for regulating the vertebrate head organizer, the nervous system, and female reproductive tract development. During embryogenesis in the mouse, Lhx1 is expressed early in mesodermal tissue, then later during urogenital, kidney, liver, and nervous system development. In the adult, expression is restricted to the kidney and brain. A mouse embryos with Lhx1 gene knockout cannot grow normal anterior head structures, kidneys, and gonads, but with normally developed trunk and tail morphology. In the developing nervous system, Lhx1 is required to direct the trajectories of motor axons in the limb. Lhx1 null female mice lack the oviducts and uterus. Lhx5 protein may play complementary or overlapping roles with Lhx1. The expression of Lhx5 in the anterior portion of the mouse neural tube suggests a role in patterning of the forebrain. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188761  Cd Length: 56  Bit Score: 42.73  E-value: 9.33e-06
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAHY 226
Cdd:cd09375    1 CAGCDQGISPNDLVRRARDKVFHLNCFTCMVCRKQLSTGEELYILDENKFICKEDY 56
LIM2_Lhx2 cd09474
The second LIM domain of Lhx2; The second LIM domain of Lhx2: Lhx2 belongs to the LHX protein ...
171-226 1.12e-05

The second LIM domain of Lhx2; The second LIM domain of Lhx2: Lhx2 belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. In animals, Lhx2 plays important roles in eye, cerebral cortex, limb, the olfactory organs, and erythrocyte development. Lhx2 gene knockout mice exhibit impaired patterning of the cortical hem and the telencephalon of the developing brain, and a lack of development in olfactory structures. The Lhx2 protein has been shown to bind to the mouse M71 olfactory receptor promoter. Similar to other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188858  Cd Length: 59  Bit Score: 42.76  E-value: 1.12e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09474    5 CARCHLGISASEMVMRARDLVYHLNCFTCTTCNKMLTTGDHFGMK-DNLVYCRLHF 59
LIM2_Lhx9 cd09475
The second LIM domain of Lhx9; The second LIM domain of Lhx9: Lhx9 belongs to the LHX protein ...
171-226 1.97e-05

The second LIM domain of Lhx9; The second LIM domain of Lhx9: Lhx9 belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx9 is highly homologous to Lhx2. It is expressed in several regions of the developing mouse brain, the spinal cord, the pancreas, in limb mesenchyme, and in the urogenital region. Lhx9 plays critical roles in gonad development. Homozygous mice lacking functional Lhx9 alleles exhibit numerous urogenital defects, such as gonadal agenesis, infertility, and undetectable levels of testosterone and estradiol coupled with high FSH levels. Lhx9 null mice have reduced levels of the Sf1 nuclear receptor that is required for gonadogenesis, and recent studies have shown that Lhx9 is able to activate the Sf1/FtzF1 gene. Lhx9 null mice are phenotypically female, even those that are genotypically male. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188859  Cd Length: 59  Bit Score: 42.00  E-value: 1.97e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09475    5 CARCHLGISASEMVMRARESVYHLSCFTCTTCNKTLTTGDHFGMK-DNLVYCRAHF 59
LIM_Mical_like_2 cd09445
This domain belongs to the LIM domain family which are found on Mical (molecule interacting ...
171-226 2.34e-05

This domain belongs to the LIM domain family which are found on Mical (molecule interacting with CasL) like proteins; The LIM domain on proteins of unknown function: This domain belongs to the LIM domain family which are found on Mical (molecule interacting with CasL)-like proteins. Known members of the Mical-like family includes single LIM domain containing proteins, Mical (molecule interacting with CasL), pollen specific protein SF3, Eplin, xin actin-binding repeat-containing protein 2 (XIRP2), and Ltd-1. The members of this family function mainly at the cytoskeleton and focal adhesions. They interact with transcription factors or other signaling molecules to play roles in muscle development, neuronal differentiation, cell growth, and mobility. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188829 [Multi-domain]  Cd Length: 53  Bit Score: 41.68  E-value: 2.34e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKeMIFHHACFVCFICGIKLNPGDYytMSPQGHLYCHAHY 226
Cdd:cd09445    1 CRSCGKPVYKMEEIIAEK-HIYHKNCFRCKDCNKQLKVDNY--QSHEGNLYCKVHF 53
LIM1_Lhx2_Lhx9 cd09369
The first LIM domain of Lhx2 and Lhx9 family; The first LIM domain of Lhx2 and Lhx9 family: ...
110-163 2.51e-05

The first LIM domain of Lhx2 and Lhx9 family; The first LIM domain of Lhx2 and Lhx9 family: Lhx2 and Lhx9 are highly homologous LHX regulatory proteins. They belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Although Lhx2 and Lhx9 are highly homologous, they seems to play regulatory roles in different organs. In animals, Lhx2 plays important roles in eye, cerebral cortex, limb, the olfactory organs, and erythrocyte development. Lhx2 gene knockout mice exhibit impaired patterning of the cortical hem and the telencephalon of the developing brain, and a lack of development in olfactory structures. Lhx9 is expressed in several regions of the developing mouse brain , the spinal cord, the pancreas, in limb mesenchyme, and in the urogenital region. Lhx9 plays critical roles in gonad development. Homozygous mice lacking functional Lhx9 alleles exhibit numerous urogenital defects, such as gonadal agenesis, infertility, and undetectable levels of testosterone and estradiol coupled with high FSH levels. Lhx9 null mice are phenotypically female, even those that are genotypically male. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188755 [Multi-domain]  Cd Length: 54  Bit Score: 41.56  E-value: 2.51e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEYSDKCYVRDGVFLCRADH 163
Cdd:cd09369    1 CAGCGEKIQDRFYLLAVDRQWHASCLKCCECRLPLDSELSCFSRDGNIYCKEDY 54
LIM2_Lhx3_Lhx4 cd09376
The second LIM domain of Lhx3-Lhx4 family; The second LIM domain of Lhx3-Lhx4 family: Lhx3 and ...
171-226 3.72e-05

The second LIM domain of Lhx3-Lhx4 family; The second LIM domain of Lhx3-Lhx4 family: Lhx3 and Lhx4 belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. The LHX3 and LHX4 LIM-homeodomain transcription factors play essential roles in pituitary gland and nervous system development. Although LHX3 and LHX4 share marked sequence homology, the genes have different expression patterns. They play overlapping, but distinct functions during the establishment of the specialized cells of the mammalian pituitary gland and the nervous system. Lhx3 proteins have been demonstrated the ability to directly bind to the promoters/enhancers of several pituitary hormone gene promoters to cause increased transcription.Lhx3a and Lhx3b, whose mRNAs have distinct temporal expression profiles during development, are two isoforms of Lhx3. LHX4 plays essential roles in pituitary gland and nervous system development. In mice, the lhx4 gene is expressed in the developing hindbrain, cerebral cortex, pituitary gland, and spinal cord. LHX4 shows significant sequence similarity to LHX3, particularly to isoforms Lhx3a. In gene regulation experiments, the LHX4 protein exhibits regulation roles towards pituitary genes, acting on their promoters/enhancers. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188762  Cd Length: 56  Bit Score: 41.18  E-value: 3.72e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAHY 226
Cdd:cd09376    1 CAGCDEGIPPTQVVRRAQDNVYHLECFACFMCKRQLETGDEFYLMEDDRLVCKKDY 56
LIM1_Lmx1b cd09371
The first LIM domain of Lmx1b; The first LIM domain of Lmx1b: Lmx1b belongs to the LHX protein ...
110-163 7.53e-05

The first LIM domain of Lmx1b; The first LIM domain of Lmx1b: Lmx1b belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. In mouse, Lmx1b functions in the developing limbs and eyes, the kidneys, the brain, and in cranial mesenchyme. The disruption of Lmx1b gene results kidney and limb defects. In the brain, Lmx1b is important for generation of mesencephalic dopamine neurons and the differentiation of serotonergic neurons. In the mouse eye, Lmx1b regulates anterior segment (cornea, iris, ciliary body, trabecular meshwork, and lens) development. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188757 [Multi-domain]  Cd Length: 53  Bit Score: 40.05  E-value: 7.53e-05
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFeySDKCYVRDGVFLCRADH 163
Cdd:cd09371    1 CAGCQRPISDRYLLRVNERSWHEECLQCSVCQQPL--TTSCYFRDRKLYCKQDY 52
LIM_Mical cd09439
The LIM domain of Mical (molecule interacting with CasL); The LIM domain of Mical (molecule ...
187-226 8.04e-05

The LIM domain of Mical (molecule interacting with CasL); The LIM domain of Mical (molecule interacting with CasL): MICAL is a large, multidomain, cytosolic protein with a single LIM domain, a calponin homology (CH) domain and a flavoprotein monooxygenase domain. In Drosophila, MICAL is expressed in axons, interacts with the neuronal A (PlexA) receptor and is required for Semapho-rin 1a (Sema-1a)-PlexA-mediated repulsive axon guidance. The LIM domain and calporin homology domain are known for interactions with the cytoskeleton, cytoskeletal adaptor proteins, and other signaling proteins. The flavoprotein monooxygenase (MO) is required for semaphorin-plexin repulsive axon guidance during axonal pathfinding in the Drosophila neuromuscular system. In addition, MICAL was characterized to interact with Rab13 and Rab8 to coordinate the assembly of tight junctions and adherens junctions in epithelial cells. Thus, MICAL was also named junctional Rab13-binding protein (JRAB). As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188823 [Multi-domain]  Cd Length: 55  Bit Score: 39.97  E-value: 8.04e-05
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|
gi 392927445 187 AKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAHY 226
Cdd:cd09439   16 AEGLFFHRSCFKCSYCGTTLRLGAYAFDRDDGKFYCKPHF 55
LIM1_Lhx4 cd09468
The first LIM domain of Lhx4; The first LIM domain of Lhx4. Lhx4 belongs to the LHX protein ...
110-162 1.66e-04

The first LIM domain of Lhx4; The first LIM domain of Lhx4. Lhx4 belongs to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. LHX4 plays essential roles in pituitary gland and nervous system development. In mice, the lhx4 gene is expressed in the developing hindbrain, cerebral cortex, pituitary gland, and spinal cord. LHX4 shows significant sequence similarity to LHX3, particularly to isoforms Lhx3a. In gene regulation experiments, the LHX4 protein exhibits regulation roles towards pituitary genes, acting on their promoters/enhancers. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188852  Cd Length: 52  Bit Score: 39.18  E-value: 1.66e-04
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|...
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFeySDKCYVRDGVFLCRAD 162
Cdd:cd09468    1 CAGCNQHILDKFILKVLDRHWHSSCLKCADCQMQL--AERCFSRAGNVYCKED 51
LIM_Eplin_like_1 cd09486
a LIM domain subfamily on a group of proteins with unknown function; This model represents a ...
169-226 2.55e-04

a LIM domain subfamily on a group of proteins with unknown function; This model represents a LIM domain subfamily of Eplin-like family. This family shows highest homology to the LIM domains on Eplin and XIRP2 protein families. Epithelial Protein Lost in Neoplasm is a cytoskeleton-associated tumor suppressor whose expression inversely correlates with cell growth, motility, invasion and cancer mortality. Xirp2 is expressed in muscles and is an important effector of the Ang II signaling pathway in the heart. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188870 [Multi-domain]  Cd Length: 53  Bit Score: 38.79  E-value: 2.55e-04
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*...
gi 392927445 169 KCCRKCEIPLNRedmvMKAKEMIFHHACFVCFICGIKLNPGDYYTMspQGHLYCHAHY 226
Cdd:cd09486    2 SSCQKTVYPMER----LVADKLVFHNSCFCCKHCNAKLSLGSYAAL--HGEFYCKPHF 53
LIM_ALP cd09450
This family represents the LIM domain of ALP, actinin-associated LIM protein; This family ...
184-225 2.59e-04

This family represents the LIM domain of ALP, actinin-associated LIM protein; This family represents the LIM domain of ALP, actinin-associated LIM protein. ALP contains an N-terminal PDZ domain, a C-terminal LIM domain and an ALP-subfamily-specific 34-amino-acid motif termed ALP-like motif (AM), which contains a putative consensus protein kinase C (PKC) phosphorylation site and two alpha-helices. ALP proteins are found in heart and in skeletal muscle. ALP may act as a signaling molecule which is regulated by PKC-dependent signaling. ALP plays an essential role in the development of RV (right ventricle) chamber. LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188834 [Multi-domain]  Cd Length: 53  Bit Score: 38.73  E-value: 2.59e-04
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|..
gi 392927445 184 VMKAKEMIFHHACFVCFICGIKLNPGDYYTMspQGHLYCHAH 225
Cdd:cd09450   12 VVKARDKYRHPECFVCSDCNLNLKQKGYFFV--EGQLYCEAH 51
LIM2_LIMK1 cd09464
The second LIM domain of LIMK1 (LIM domain Kinase 1); The second LIM domain of LIMK1 (LIM ...
171-222 2.86e-04

The second LIM domain of LIMK1 (LIM domain Kinase 1); The second LIM domain of LIMK1 (LIM domain Kinase 1): LIMK1 belongs to the LIMK protein family, which comprises LIMK1 and LIMK2. LIMK contains two LIM domains, a PDZ domain, and a kinase domain. LIMK is involved in the regulation of actin polymerization and microtubule disassembly. LIMK influences architecture of the actin cytoskeleton by regulating the activity of the cofilin family proteins cofilin1, cofilin2, and destrin. The mechanism of the activation is to phosphorylates cofilin on serine 3 and inactivates its actin-severing activity, and altering the rate of actin depolymerization. LIMKs can function in both cytoplasm and nucleus. Both LIMK1 and LIMK2 can act in the nucleus to suppress Rac/Cdc42-dependent cyclin D1 expression. LIMK1 is expressed in all tissues and is localized to focal adhesions in the cell. LIMK1 can form homodimers upon binding of HSP90 and is activated by Rho effector Rho kinase and MAPKAPK2. LIMK1 is important for normal central nervous system development, and its deletion has been implicated in the development of the human genetic disorder Williams syndrome. Moreover, LIMK1 up-regulates the promoter activity of urokinase type plasminogen activator and induces its mRNA and protein expression in breast cancer cells. The LIM domains have been shown to play an important role in regulating kinase activity and likely also contribute to LIMK function by acting as sites of protein-to-protein interactions. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188848  Cd Length: 55  Bit Score: 38.70  E-value: 2.86e-04
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                 ....*....|....*....|....*....|....*....|....*....|..
gi 392927445 171 CRKCEIPLNReDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYC 222
Cdd:cd09464    1 CHGCSETITT-GLVMVAGEQKYHPECFSCLRCGAFIGDGDTYALVEHSKLYC 51
LIM2_Lhx3b cd09472
The second LIM domain of Lhx3b; The second LIM domain of Lhx3b. Lhx3b is a member of LHX ...
171-226 3.65e-04

The second LIM domain of Lhx3b; The second LIM domain of Lhx3b. Lhx3b is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx3b is one of the two isoforms of Lhx3. The Lhx3 gene is expressed in the ventral spinal cord, the pons, the medulla oblongata, and the pineal gland of the developing nervous system during mouse embryogenesis, and transcripts are found in the emergent pituitary gland. Lhx3 functions in concert with other transcription factors to specify interneuron and motor neuron fates during development. Lhx3 proteins have been demonstrated to directly bind to the promoters of several pituitary hormone gene promoters. The Lhx3 gene encodes two isoforms, LHX3a and LHX3b that differ in their amino-terminal sequences, where Lhx3a has longer N-terminal. They show differential activation of pituitary hormone genes and distinct DNA binding properties. In human, Lhx3a trans-activated the alpha-glycoprotein subunit promoter and genes containing a high-affinity Lhx3 binding site more effectively than the hLhx3b isoform. In addition, hLhx3a induce transcription of the TSHbeta-subunit gene by acting on pituitary POU domain factor, Pit-1, while hLhx3b does not. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein


Pssm-ID: 188856  Cd Length: 57  Bit Score: 38.52  E-value: 3.65e-04
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                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAHY 226
Cdd:cd09472    2 CAACQQGIPPTQVVRRAQDFVYHLHCFACIVCKRQLATGDEFYLMEDSRLVCKADY 57
LIM_like_1 cd09400
LIM domain in proteins of unknown function; LIM domain in proteins of unknown function: LIM ...
171-222 3.74e-04

LIM domain in proteins of unknown function; LIM domain in proteins of unknown function: LIM domains are identified in a diverse group of proteins with wide variety of biological functions, including gene expression regulation, cell fate determination, cytoskeleton organization, tumor formation, and development. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes. They perform their functions through interactions with other protein partners. The LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. The consensus sequence of LIM domain has been defined as C-x(2)-C-x(16,23)-H-x(2)-[CH]-x(2)-C-x(2)-C-x(16,21)-C-x(2,3)-[CHD] (where X denotes any amino acid).


Pssm-ID: 188784  Cd Length: 61  Bit Score: 38.56  E-value: 3.74e-04
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                 ....*....|....*....|....*....|....*....|....*....|..
gi 392927445 171 CRKCEIPLNREDMVMKAKEmIFHHACFVCFICGIKLNPGDYYTMSPQGhlYC 222
Cdd:cd09400    5 CASCGLPVFLAERLLIEGK-VYHRTCFKCARCGVQLTPGSFYETEYGS--YC 53
LIM1_Lhx3_Lhx4 cd09368
The first LIM domain of Lhx3 and Lhx4 family; The first LIM domain of Lhx3-Lhx4 family: Lhx3 ...
110-162 4.41e-04

The first LIM domain of Lhx3 and Lhx4 family; The first LIM domain of Lhx3-Lhx4 family: Lhx3 and Lhx4 belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. The LHX3 and LHX4 LIM-homeodomain transcription factors play essential roles in pituitary gland and nervous system development. Although LHX3 and LHX4 share marked sequence homology, the genes have different expression patterns. They play overlapping, but distinct functions during the establishment of the specialized cells of the mammalian pituitary gland and the nervous system. Lhx3 proteins have been demonstrated the ability to directly bind to the promoters/enhancers of several pituitary hormone gene promoters to cause increased transcription. Lhx3a and Lhx3b, whose mRNAs have distinct temporal expression profiles during development, are two isoforms of Lhx3. LHX4 plays essential roles in pituitary gland and nervous system development. In mice, the lhx4 gene is expressed in the developing hindbrain, cerebral cortex, pituitary gland, and spinal cord. LHX4 shows significant sequence similarity to LHX3, particularly to isoforms Lhx3a. In gene regulation experiments, the LHX4 protein exhibits regulation roles towards pituitary genes, acting on their promoters/enhancers. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188754  Cd Length: 52  Bit Score: 37.78  E-value: 4.41e-04
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                 ....*....|....*....|....*....|....*....|....*....|...
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFeySDKCYVRDGVFLCRAD 162
Cdd:cd09368    1 CGGCQEHILDRFILKVLDRTWHAKCLKCNDCGAQL--TDKCFARNGHVYCKDD 51
LIM1_LMO4 cd09386
The first LIM domain of LMO4 (LIM domain only protein 4); The first LIM domain of LMO4 (LIM ...
110-163 4.72e-04

The first LIM domain of LMO4 (LIM domain only protein 4); The first LIM domain of LMO4 (LIM domain only protein 4): LMO4 is a nuclear protein that plays important roles in transcriptional regulation and development. LMO4 is involved in various functions in tumorigenesis and cellular differentiation. LMO4 proteins regulate gene expression by interacting with a wide variety of transcription factors and cofactors to form large transcription complexes. It can interact with Smad proteins, and associate with the promoter of the PAI-1 (plasminogen activator inhibitor-1) gene in a TGFbeta (transforming growth factor beta)-dependent manner. LMO4 can also form a complex with transcription regulator CREB (cAMP response element-binding protein) and interact with CLIM1 and CLIM2. In breast tissue, LMO4 interacts with multiple proteins, including the cofactor CtIP [CtBP (C-terminal binding protein)-interacting protein], the breast and ovarian tumor suppressor BRCA1 (breast-cancer susceptibility gene 1) and the LIM-domain-binding protein LDB1. Functionally, LMO4 is shown to repress BRCA1-mediated transcription activation, thus invoking a potential role for LMO4 as a negative regulator of BRCA1 in sporadic breast cancer. LMO4 also forms complex to both ERa (oestrogen receptor alpha), MTA1 (metastasis tumor antigen 1), and HDACs (histone deacetylases), implying that LMO4 is also a component of the MTA1 corepressor complex. Over-expressed LMO4 represses ERa transactivation functions in an HDAC-dependent manner, and contributes to the process of breast cancer progression by allowing the development of Era-negative phenotypes. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188772 [Multi-domain]  Cd Length: 55  Bit Score: 37.79  E-value: 4.72e-04
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gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPF-EYSDKCYVRDGVFLCRADH 163
Cdd:cd09386    1 CAGCGGKIVDRFLLHALDRYWHNGCLKCSCCQAQLgEIGSSCYTKGGMILCKNDY 55
LIM_LASP cd09447
The LIM domain of LIM and SH3 Protein (LASP); The LIM domain of LIM and SH3 Protein (LASP): ...
191-226 5.56e-04

The LIM domain of LIM and SH3 Protein (LASP); The LIM domain of LIM and SH3 Protein (LASP): LASP family contains two highly homologous members, LASP-1 and LASP-2. LASP contains a LIM motif at its amino terminus, a src homology 3 (SH3) domains at its C-terminal part, and a nebulin-like region in the middle. LASP-1 and -2 are highly conserved in their LIM, nebulin-like, and SH3 domains ,but differ significantly at their linker regions. Both proteins are ubiquitously expressed and involved in cytoskeletal architecture, especially in the organization of focal adhesions. LASP-1 and LASP-2, are important during early embryo- and fetogenesis and are highly expressed in the central nervous system of the adult. However, only LASP-1 seems to participate significantly in neuronal differentiation and plays an important functional role in migration and proliferation of certain cancer cells while the role of LASP-2 is more structural. The expression of LASP-1 in breast tumors is increased significantly. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188831  Cd Length: 53  Bit Score: 37.74  E-value: 5.56e-04
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gi 392927445 191 IFHHACFVCFICGIKLNPGDY--YTMSPqghlYCHAHY 226
Cdd:cd09447   20 IWHKGCFKCEVCGMTLNMKNYkgYNKKP----YCNAHY 53
LIM1_Zyxin cd09349
The first LIM domain of Zyxin; The first LIM domain of Zyxin: Zyxin exhibits three copies of ...
171-226 6.25e-04

The first LIM domain of Zyxin; The first LIM domain of Zyxin: Zyxin exhibits three copies of the LIM domain, an extensive proline-rich domain and a nuclear export signal. Localized at sites of cell substratum adhesion in fibroblasts, Zyxin interacts with alpha-actinin, members of the cysteine-rich protein (CRP) family, proteins that display Src homology 3 (SH3) domains and Ena/VASP family members. Zyxin and its partners have been implicated in the spatial control of actin filament assembly as well as in pathways important for cell differentiation. In addition to its functions at focal adhesion plaques, recent work has shown that zyxin moves from the sites of cell contacts to the nucleus, where it directly participates in the regulation of gene expression. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188735 [Multi-domain]  Cd Length: 87  Bit Score: 38.68  E-value: 6.25e-04
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                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYtmSPQGHLYCHAHY 226
Cdd:cd09349   34 CGICGQPLSRTQPAVRALGHLFHVTCFTCHQCEQQLQGQQFY--SLEGKPYCEECY 87
Homeobox_KN pfam05920
Homeobox KN domain; This is a homeobox transcription factor KN domain conserved from fungi to ...
317-349 6.42e-04

Homeobox KN domain; This is a homeobox transcription factor KN domain conserved from fungi to human and plants. They were first identified as TALE homeobox genes in eukaryotes, (including KNOX and MEIS genes). They have been recently classified.


Pssm-ID: 428673  Cd Length: 39  Bit Score: 37.11  E-value: 6.42e-04
                          10        20        30
                  ....*....|....*....|....*....|...
gi 392927445  317 PDAKDLKQLAAKTNLTKRVLQVWFQNARakyRR 349
Cdd:pfam05920  10 PSEEEKAELAKETGLSRKQISNWFINAR---RR 39
LIM2_Lmx1a_Lmx1b cd09378
The second LIM domain of Lmx1a and Lmx1b; The second LIM domain of Lmx1a and Lmx1b: Lmx1a and ...
171-226 6.96e-04

The second LIM domain of Lmx1a and Lmx1b; The second LIM domain of Lmx1a and Lmx1b: Lmx1a and Lmx1b belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs such as the pituitary gland and the pancreas. Mouse Lmx1a is expressed in multiple tissues, including the roof plate of the neural tube, the developing brain, the otic vesicles, the notochord, and the pancreas. In mouse, mutations in Lmx1a result in failure of the roof plate to develop. Lmx1a may act upstream of other roof plate markers such as MafB, Gdf7, Bmp6, and Bmp7. Further characterization of these mice reveals numerous defects including disorganized cerebellum, hippocampus, and cortex; altered pigmentation; female sterility, skeletal defects, and behavioral abnormalities. In the mouse, Lmx1b functions in the developing limbs and eyes, the kidneys, the brain, and in cranial mesenchyme. The disruption of Lmx1b gene results kidney and limb defects. In the brain, Lmx1b is important for generation of mesencephalic dopamine neurons and the differentiation of serotonergic neurons. In the mouse eye, Lmx1b regulates anterior segment (cornea, iris, ciliary body, trabecular meshwork, and lens) development. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188764  Cd Length: 55  Bit Score: 37.43  E-value: 6.96e-04
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                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSpQGHLYCHAHY 226
Cdd:cd09378    1 CSGCLEKIAPSELVMRALENVYHLRCFCCCVCERQLQKGDEFVLK-EGQLLCKSDY 55
LIM1_Lhx3b cd09467
The first LIM domain of Lhx3b; The first LIM domain of Lhx3b. Lhx3b is a member of LHX protein ...
109-162 6.97e-04

The first LIM domain of Lhx3b; The first LIM domain of Lhx3b. Lhx3b is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx3b is one of the two isoforms of Lhx3. The Lhx3 gene is expressed in the ventral spinal cord, the pons, the medulla oblongata, and the pineal gland of the developing nervous system during mouse embryogenesis, and transcripts are found in the emergent pituitary gland. Lhx3 functions in concert with other transcription factors to specify interneuron and motor neuron fates during development. Lhx3 proteins have been demonstrated to directly bind to the promoters of several pituitary hormone gene promoters. The Lhx3 gene encodes two isoforms, LHX3a and LHX3b that differ in their amino-terminal sequences, where Lhx3a has longer N-terminal. They show differential activation of pituitary hormone genes and distinct DNA binding properties. In human, Lhx3a trans-activated the alpha-glycoprotein subunit promoter and genes containing a high-affinity Lhx3 binding site more effectively than the hLhx3b isoform. In addition, hLhx3a induce transcription of the TSHbeta-subunit gene by acting on pituitary POU domain factor, Pit-1, while hLhx3b does not. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188851 [Multi-domain]  Cd Length: 55  Bit Score: 37.61  E-value: 6.97e-04
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                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 109 QCCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFeySDKCYVRDGVFLCRAD 162
Cdd:cd09467    3 LCAGCNQHIVDRFILKVLDRHWHSKCLKCSDCQTQL--AEKCFSRGDSVYCKDD 54
LIM1_Lhx1_Lhx5 cd09367
The first LIM domain of Lhx1 (also known as Lim1) and Lhx5; The first LIM domain of Lhx1 (also ...
110-162 7.10e-04

The first LIM domain of Lhx1 (also known as Lim1) and Lhx5; The first LIM domain of Lhx1 (also known as Lim1) and Lhx5. Lhx1 and Lhx5 are closely related members of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Lhx1 is required for regulating the vertebrate head organizer, the nervous system, and female reproductive tract development. During embryogenesis in the mouse, Lhx1 is expressed early in mesodermal tissue, then later during urogenital, kidney, liver, and nervous system development. In the adult, expression is restricted to the kidney and brain. A mouse embryos with Lhx1 gene knockout cannot grow normal anterior head structures, kidneys, and gonads, but with normally developed trunk and tail morphology. In the developing nervous system, Lhx1 is required to direct the trajectories of motor axons in the limb. Lhx1 null female mice lack the oviducts and uterus. Lhx5 protein may play complementary or overlapping roles with Lhx1. The expression of Lhx5 in the anterior portion of the mouse neural tube suggests a role in patterning of the forebrain. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188753 [Multi-domain]  Cd Length: 52  Bit Score: 37.41  E-value: 7.10e-04
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                 ....*....|....*....|....*....|....*....|....*....|...
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFeySDKCYVRDGVFLCRAD 162
Cdd:cd09367    1 CAGCDRPILDKFLLNVLDRAWHAKCVQCCDCKCPL--TEKCFSREGKLYCRND 51
LIM2_Lhx7_Lhx8 cd09383
The second LIM domain of Lhx7 and Lhx8; The second LIM domain of Lhx7 and Lhx8: Lhx7 and Lhx8 ...
171-226 8.00e-04

The second LIM domain of Lhx7 and Lhx8; The second LIM domain of Lhx7 and Lhx8: Lhx7 and Lhx8 belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs such as the pituitary gland and the pancreas. Studies using mutant mice have revealed roles for Lhx7 and Lhx8 in the development of cholinergic neurons in the telencephalon and in basal forebrain development. Mice lacking alleles of the LIM-homeobox gene Lhx7 or Lhx8 display dramatically reduced number of forebrain cholinergic neurons. In addition, Lhx7 mutation affects male and female mice differently, with females appearing more affected than males. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188769  Cd Length: 55  Bit Score: 37.32  E-value: 8.00e-04
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                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQgHLYCHAHY 226
Cdd:cd09383    1 CSRCGRHIHSTDWVRRAKGNVYHLACFACFSCKRQLSTGEEFALVEE-KVLCRVHY 55
LIM1_Testin_like cd09340
The first LIM domain of Testin-like family; The first LIM domain of Testin_like family: This ...
171-226 8.95e-04

The first LIM domain of Testin-like family; The first LIM domain of Testin_like family: This family includes testin, prickle, dyxin and LIMPETin. Structurally, testin and prickle proteins contain three LIM domains at C-terminal; LIMPETin has six LIM domains; and dyxin presents only two LIM domains. However, all members of the family contain a PET protein-protein interaction domain. Testin is a cytoskeleton associated focal adhesion protein that localizes along actin stress fibers, at cell-cell-contact areas, and at focal adhesion plaques. Testin interacts with a variety of cytoskeletal proteins, including zyxin, mena, VASP, talin, and actin and it is involved in cell motility and adhesion events. Prickles have been implicated in roles of regulating tissue polarity or planar cell polarity (PCP). Dyxin involves in lung and heart development by interaction with GATA6 and blocking GATA6 activated target genes. LIMPETin might be the recombinant product of genes coding testin and four and half LIM proteins and its function is not well understood. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188726  Cd Length: 58  Bit Score: 37.20  E-value: 8.95e-04
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                 ....*....|....*....|....*....|....*....|....*....|....*....|
gi 392927445 171 CRKCEIPLNREDMVMKA----KEMIFHHACFVCFICGIKLNPGDYYtmSPQGHLYCHAHY 226
Cdd:cd09340    1 CEKCKEPINPGEVAVFAeragEDACWHPGCFVCETCNELLVDLIYF--YHDGKIYCGRHY 58
LIM1_abLIM cd09327
The first LIM domain of actin binding LIM (abLIM) proteins; The first LIM domain of actin ...
171-226 1.06e-03

The first LIM domain of actin binding LIM (abLIM) proteins; The first LIM domain of actin binding LIM (abLIM) proteins: Three homologous members of the abLIM protein family have been identified; abLIM-1, abLIM-2 and abLIM-3. The N-terminal of abLIM consists of four tandem repeats of LIM domains and the C-terminal of acting binding LIM protein is a villin headpiece domain, which has strong actin binding activity. The abLIM-1, which is expressed in retina, brain, and muscle tissue, has been indicated to function as a tumor suppressor. AbLIM-2 and -3, mainly expressed in muscle and neuronal tissue, bind to F-actin strongly. They may serve as a scaffold for signaling modules of the actin cytoskeleton and thereby modulate transcription. It has shown that LIM domains of abLIMs interact with STARS (striated muscle activator of Rho signaling), which directly binds actin and stimulates serum-response factor (SRF)-dependent transcription. All LIM domains are 50-60 amino acids in size and share two characteristic highly conserved zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188713 [Multi-domain]  Cd Length: 52  Bit Score: 36.85  E-value: 1.06e-03
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                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNREdmVMKAKEMIFHHACFVCFICGIKLNPGDYYTmsPQGHLYCHAHY 226
Cdd:cd09327    1 CYKCGKKCKGE--VLRVQDKYFHIKCFTCKVCGCDLAQGGFFV--KEGEYYCTDDY 52
LIM3_ENH cd09459
The third LIM domain of the Enigma Homolog (ENH) family; The third LIM domain of the Enigma ...
171-225 1.28e-03

The third LIM domain of the Enigma Homolog (ENH) family; The third LIM domain of the Enigma Homolog (ENH) family: ENH was initially identified in rat brain. Same as enigma, it contains three LIM domains at the C-terminus and a PDZ domain at N-terminus. ENH is implicated in signal transduction processes involving protein kinases. It has also been shown that ENH interacts with protein kinase D1 (PKD1) via its LIM domains and forms a complex with PKD1 and the alpha1C subunit of cardiac L-type voltage-gated calcium channel in rat neonatal cardiomyocytes. The N-terminal PDZ domain interacts with alpha-actinin at the Z-line. ENH is expressed in multiple tissues, such as skeletal muscle, heart, bone, and brain. LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188843 [Multi-domain]  Cd Length: 55  Bit Score: 36.87  E-value: 1.28e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*
gi 392927445 171 CRKCEIPLNREDMVMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAH 225
Cdd:cd09459    1 CHGCEFPIEAGDRFLEALGHTWHDTCFVCSVCCESLEGQTFFSKKDKPLCKKHAH 55
LIM1_Lhx7_Lhx8 cd09381
The first LIM domain of Lhx7 and Lhx8; The first LIM domain of Lhx7 and Lhx8: Lhx7 and Lhx8 ...
110-163 1.36e-03

The first LIM domain of Lhx7 and Lhx8; The first LIM domain of Lhx7 and Lhx8: Lhx7 and Lhx8 belong to the LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs such as the pituitary gland and the pancreas. Studies using mutant mice have revealed roles for Lhx7 and Lhx8 in the development of cholinergic neurons in the telencephalon and in basal forebrain development. Mice lacking alleles of the LIM-homeobox gene Lhx7 or Lhx8 display dramatically reduced number of forebrain cholinergic neurons. In addition, Lhx7 mutation affects male and female mice differently, with females appearing more affected than males. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188767 [Multi-domain]  Cd Length: 56  Bit Score: 36.88  E-value: 1.36e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEYSDKCYVRDGVFLCRADH 163
Cdd:cd09381    2 CSSCGLEIVDKYLLKVNDLCWHVRCLSCSVCRTSLGRHTSCYIKDKDIFCKLDY 55
LIM1_UF1 cd09397
LIM domain in proteins of unknown function; The first Lim domain of a LIM domain containing ...
110-160 1.61e-03

LIM domain in proteins of unknown function; The first Lim domain of a LIM domain containing protein: The functions of the proteins are unknown. The members of this family contain two copies of LIM domain. The LIM domain is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188783 [Multi-domain]  Cd Length: 58  Bit Score: 36.47  E-value: 1.61e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKY---YHNNCLRCQMCDIPFEYSDKCYVRDGVFLCR 160
Cdd:cd09397    1 CRKCGLEIEGKSISSKDGELsgqWHRECFVCTTCGCPFQFSVPCYVLDDKPYCQ 54
LIM2_LIMK cd09365
The second LIM domain of LIMK (LIM domain Kinase ); The second LIM domain of LIMK (LIM domain ...
184-226 2.06e-03

The second LIM domain of LIMK (LIM domain Kinase ); The second LIM domain of LIMK (LIM domain Kinase ): LIMK protein family is comprised of two members LIMK1 and LIMK2. LIMK contains two LIM domains, a PDZ domain and a kinase domain. LIMK is involved in the regulation of actin polymerization and microtubule disassembly. LIMK influences architecture of the actin cytoskeleton by regulating the activity of the cofilin family proteins cofilin1, cofilin2, and destrin. The mechanism of the activation is to phosphorylates cofilin on serine 3 and inactivates its actin-severing activity, and altering the rate of actin depolymerization. LIMKs can function in both cytoplasm and nucleus and are expressed in all tissues. Both LIMK1 and LIMK2 can act in the nucleus to suppress Rac/Cdc42-dependent cyclin D1 expression. However, LIMK1 and LIMk2 have different cellular locations. While LIMK1 localizes mainly at focal adhesions, LIMK2 is found in cytoplasmic punctae, suggesting that they may have different cellular functions. The LIM domains of LIMK have been shown to play an important role in regulating kinase activity and likely also contribute to LIMK function by acting as sites of protein-to-protein interactions. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188751 [Multi-domain]  Cd Length: 54  Bit Score: 36.19  E-value: 2.06e-03
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|...
gi 392927445 184 VMKAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYCHAHY 226
Cdd:cd09365   12 VMVAGDHKFHPECFSCSSCKAFIGDGDSYALVERSKLYCGVCY 54
LIM2_LIMK2 cd09465
The second LIM domain of LIMK2 (LIM domain Kinase 2); The second LIM domain of LIMK2 (LIM ...
166-222 3.20e-03

The second LIM domain of LIMK2 (LIM domain Kinase 2); The second LIM domain of LIMK2 (LIM domain Kinase 2): LIMK2 is a member of the LIMK protein family, which comprises LIMK1 and LIMK2. LIMK contains two LIM domains, a PDZ domain, and a kinase domain. LIMK is involved in the regulation of actin polymerization and microtubule disassembly. LIMK influences architecture of the actin cytoskeleton by regulating the activity of the cofilin family proteins cofilin1, cofilin2, and destrin. The mechanism of the activation is to phosphorylates cofilin on serine 3 and inactivates its actin-severing activity, altering the rate of actin depolymerisation. LIMK activity is activated by phosphorylation of a threonine residue within the activation loop of the kinase by p21-activated kinases 1 and 4 and by Rho kinase. LIMKs can function in both cytoplasm and nucleus. Both LIMK1 and LIMK2 can act in the nucleus to suppress Rac/Cdc42-dependent cyclin D1 expression. LIMK2 is expressed in all tissues. While LIMK1 localizes mainly at focal adhesions, LIMK2 is found in cytoplasmic punctae, suggesting that they may have different cellular functions. The activity of LIM kinase 2 to regulate cofilin phosphorylation is inhibited by the direct binding of Par-3. LIMK2 activation promotes cell cycle progression. The phenotype of Limk2 knockout mice shows a defect in spermatogenesis. The LIM domains have been shown to play an important role in regulating kinase activity and likely also contribute to LIMK function by acting as sites of protein-to-protein interactions. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188849 [Multi-domain]  Cd Length: 59  Bit Score: 35.68  E-value: 3.20e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*..
gi 392927445 166 RYQKCCRKCEIPLNREDMVmkAKEMIFHHACFVCFICGIKLNPGDYYTMSPQGHLYC 222
Cdd:cd09465    1 KFGELCHGCSLLMTGPAMV--AGEYKYHPECFACMSCKVIIEDGDTYALVQHTTLYC 55
LIM_Eplin_like cd09442
The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin) like proteins; The Lim domain of ...
171-226 3.29e-03

The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin) like proteins; The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin) like proteins: This family contains Epithelial Protein Lost in Neoplasm in Neoplasm (Eplin), xin actin-binding repeat-containing protein 2 (XIRP2) and a group of protein with unknown function. The members of this family all contain a single LIM domain. Epithelial Protein Lost in Neoplasm is a cytoskeleton-associated tumor suppressor whose expression inversely correlates with cell growth, motility, invasion and cancer mortality. Eplin interacts and stabilizes F-actin filaments and stress fibers, which correlates with its ability to suppress anchorage independent growth. In epithelial cells, Eplin is required for formation of the F-actin adhesion belt by binding to the E-cadherin-catenin complex through alpha-catenin. Eplin is expressed in two isoforms, a longer Eplin-beta and a shorter Eplin-alpha. Eplin-alpha mRNA is detected in various tissues and cell lines, but is absent or down regulated in cancer cells. Xirp2 contains a LIM domain and Xin re peats for binding to and stabilising F-actin. Xirp2 is expressed in muscles and is significantly induced in the heart in response to systemic administration of angiotensin II. Xirp2 is an important effector of the Ang II signaling pathway in the heart. The expression of Xirp2 is activated by myocyte enhancer factor (MEF)2A, whose transcriptional activity is stimulated by angiotersin II. Thus, Xirp2 plays important pathological roles in the angiotensin II induced hypertension. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188826 [Multi-domain]  Cd Length: 53  Bit Score: 35.53  E-value: 3.29e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNRedmvMKAKEMIFHHACFVCFICGIKLNPGDYytMSPQGHLYCHAHY 226
Cdd:cd09442    4 CQKRVYPMER----LIADKQNFHKSCFRCEHCNSKLSLGNY--ASLHGRIYCKPHF 53
LIM2_Isl cd09374
The second LIM domain of Isl, a member of LHX protein family; The second LIM domain of Isl: ...
128-163 6.64e-03

The second LIM domain of Isl, a member of LHX protein family; The second LIM domain of Isl: Isl is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Isl1 and Isl2 are the two conserved members of this family. Proteins in this group are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs, such as the pituitary gland and the pancreas. Isl-1 is one of the LHX proteins isolated originally by virtue of its ability to bind DNA sequences from the 5'-flanking region of the rat insulin gene in pancreatic insulin-producing cells. Mice deficient in Isl-1 fail to form the dorsal exocrine pancreas and islet cells fail to differentiate. On the other hand, Isl-1 takes part in the pituitary development by activating the gonadotropin-releasing hormone receptor gene together with LHX3 and steroidogenic factor 1. Mouse Isl2 is expressed in the retinal ganglion cells and the developing spinal cord where it plays a role in motor neuron development. Same as Isl1, Isl2 may also be able to bind to the insulin gene enhancer to promote gene activation. All LIM domains are 50-60 amino acids in size and share two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188760  Cd Length: 55  Bit Score: 34.72  E-value: 6.64e-03
                         10        20        30
                 ....*....|....*....|....*....|....*.
gi 392927445 128 KYYHNNCLRCQMCDIPFEYSDKCYVRDGVFLCRADH 163
Cdd:cd09374   20 KIYHIECFRCSACSRQLIPGDEFALRDDGLFCKADH 55
LIM1_Lhx6 cd09380
The first LIM domain of Lhx6; The first LIM domain of Lhx6. Lhx6 is a member of LHX protein ...
110-163 6.75e-03

The first LIM domain of Lhx6; The first LIM domain of Lhx6. Lhx6 is a member of LHX protein family, which features two tandem N-terminal LIM domains and a C-terminal DNA binding homeodomain. Members of LHX family are found in the nucleus and act as transcription factors or cofactors. LHX proteins are critical for the development of specialized cells in multiple tissue types, including the nervous system, skeletal muscle, the heart, the kidneys, and endocrine organs such as the pituitary gland and the pancreas. Lhx6 functions in the brain and nervous system. It is expressed at high levels in several regions of the embryonic mouse CNS, including the telencephalon and hypothalamus, and the first branchial arch. Lhx6 is proposed to have a role in patterning of the mandible and maxilla, and in signaling during odontogenesis. In brain sections, knockdown of Lhx6 gene blocks the normal migration of neurons to the cortex. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein complexes.


Pssm-ID: 188766 [Multi-domain]  Cd Length: 54  Bit Score: 34.62  E-value: 6.75e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 392927445 110 CCLCTFAIVDKEISVVDGKYYHNNCLRCQMCDIPFEYSDKCYVRDGVFLCRADH 163
Cdd:cd09380    1 CSSCGLEILDRYLLKVNNLIWHVRCLECSVCRTSLRQHNSCYIKNKEIFCKMDY 54
LIM_Eplin_alpha_beta cd09485
The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin); The Lim domain of Epithelial ...
171-226 7.08e-03

The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin); The Lim domain of Epithelial Protein Lost in Neoplasm (Eplin): Epithelial Protein Lost in Neoplasm is a cytoskeleton-associated tumor suppressor whose expression inversely correlates with cell growth, motility, invasion and cancer mortality. Eplin interacts and stabilizes F-actin filaments and stress fibers, which correlates with its ability to suppress anchorage independent growth. In epithelial cells, Eplin is required for formation of the F-actin adhesion belt by binding to the E-cadherin-catenin complex through alpha-catenin. Eplin is expressed in two isoforms, a longer Eplin-beta and a shorter Eplin-alpha. Eplin-alpha mRNA is detected in various tissues and cell lines, but is absent or down regulated in cancer cells. As in other LIM domains, this domain family is 50-60 amino acids in size and shares two characteristic zinc finger motifs. The two zinc fingers contain eight conserved residues, mostly cysteines and histidines, which coordinately bond to two zinc atoms. LIM domains function as adaptors or scaffolds to support the assembly of multimeric protein.


Pssm-ID: 188869 [Multi-domain]  Cd Length: 53  Bit Score: 34.47  E-value: 7.08e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*.
gi 392927445 171 CRKCEIPLNRedmvMKAKEMIFHHACFVCFICGIKLNPGDYYTMspQGHLYCHAHY 226
Cdd:cd09485    4 CQKTVYPLER----LVANQQIYHNSCFRCSYCNTKLSLGTYASL--HGNIYCKPHF 53
 
Blast search parameters
Data Source: Precalculated data, version = cdd.v.3.21
Preset Options:Database: CDSEARCH/cdd   Low complexity filter: no  Composition Based Adjustment: yes   E-value threshold: 0.01

References:

  • Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
  • Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
  • Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
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