NCBI Home Page NCBI Site Search page NCBI Guide that lists and describes the NCBI resources
Conserved domains on  [gi|187280837|ref|NP_001119793|]
View 

odorant binding protein Ib-like precursor [Mus musculus]

Protein Classification

lipocalin/fatty-acid binding family protein( domain architecture ID 14443768)

lipocalin/fatty-acid binding family protein such as lipocalins, which are transporters for small hydrophobic molecules, including lipids, steroid hormones, bilins, and retinoids

Graphical summary

 Zoom to residue level

show extra options »

Show site features     Horizontal zoom: ×

List of domain hits

Name Accession Description Interval E-value
lipocalin_OBP-like cd19427
Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) ...
22-169 1.40e-76

Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) transport small hydrophobic molecules in the nasal mucosa of vertebrates. This subfamily includes mouse odorant-binding protein 1a (Obp1a), Obp1b, and probasin. Mouse Obp1a and Obp1b, which are expressed in the nasal mucosa, bind the chemical odorant 2-isobutyl-3-methoxypyrazine, and may form a OBPO1a/Opb1B heterodimer. Mouse probasin may play a role in the biology of the prostate gland. This group also includes hamster female-specific lacrimal gland protein (FLP) and aphrodisin. FLP may bind tear lipids or lipid-like pheromones found in hamster tears; aphrodisin is found in hamster vaginal discharge, carries pheromones, and stimulates copulatory behavior in males. This group also includes dog allergen Ca f4 which is expressed by tongue epithelial tissue and found in saliva and dander. Bovine OBP is believed to act as a homodimer, having the C-terminal alpha-helix of each monomer stacking against the beta-barrel of the other monomer; this is possible due to its lack of cysteines and therefore lack of disulfide bonds. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


:

Pssm-ID: 381202  Cd Length: 147  Bit Score: 225.22  E-value: 1.40e-76
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  22 HPELQGQWKTTAIMADNIDKIETSGPLELFVREITCDEGCQKMKVTFYVKQNGQCSLTTVTGYKQEDGkTFKNQYEGENN 101
Cdd:cd19427    1 LSELSGPWRTIYIAADNVEKIEEGGPLRTYFREIECDDECQKIKITFYVKKNGQCQETTVVGYKQEDG-TYVADYEGQNY 79
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 187280837 102 YKLLKATSENLVFYDENVDRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19427   80 FKVVSVSEDALVFYNVNVDRAGRKTKLTLLLGKGNSLTPEQKEKFKKLAEEKGIPEENIRNLLETDNC 147
 
Name Accession Description Interval E-value
lipocalin_OBP-like cd19427
Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) ...
22-169 1.40e-76

Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) transport small hydrophobic molecules in the nasal mucosa of vertebrates. This subfamily includes mouse odorant-binding protein 1a (Obp1a), Obp1b, and probasin. Mouse Obp1a and Obp1b, which are expressed in the nasal mucosa, bind the chemical odorant 2-isobutyl-3-methoxypyrazine, and may form a OBPO1a/Opb1B heterodimer. Mouse probasin may play a role in the biology of the prostate gland. This group also includes hamster female-specific lacrimal gland protein (FLP) and aphrodisin. FLP may bind tear lipids or lipid-like pheromones found in hamster tears; aphrodisin is found in hamster vaginal discharge, carries pheromones, and stimulates copulatory behavior in males. This group also includes dog allergen Ca f4 which is expressed by tongue epithelial tissue and found in saliva and dander. Bovine OBP is believed to act as a homodimer, having the C-terminal alpha-helix of each monomer stacking against the beta-barrel of the other monomer; this is possible due to its lack of cysteines and therefore lack of disulfide bonds. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381202  Cd Length: 147  Bit Score: 225.22  E-value: 1.40e-76
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  22 HPELQGQWKTTAIMADNIDKIETSGPLELFVREITCDEGCQKMKVTFYVKQNGQCSLTTVTGYKQEDGkTFKNQYEGENN 101
Cdd:cd19427    1 LSELSGPWRTIYIAADNVEKIEEGGPLRTYFREIECDDECQKIKITFYVKKNGQCQETTVVGYKQEDG-TYVADYEGQNY 79
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 187280837 102 YKLLKATSENLVFYDENVDRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19427   80 FKVVSVSEDALVFYNVNVDRAGRKTKLTLLLGKGNSLTPEQKEKFKKLAEEKGIPEENIRNLLETDNC 147
Lipocalin pfam00061
Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small ...
26-167 9.74e-17

Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids. The family also encompasses the enzyme prostaglandin D synthase (EC:5.3.99.2). Alignment subsumes both the lipocalin and fatty acid binding protein signatures from PROSITE. This is supported on structural and functional grounds. The structure is an eight-stranded beta barrel.


Pssm-ID: 395015  Cd Length: 143  Bit Score: 72.47  E-value: 9.74e-17
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837   26 QGQWKTTAiMADNIDKIETSGPLELFVREITCDEgCQKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFK---NQYEGENNY 102
Cdd:pfam00061   1 SGKWYLIA-SANFNELEEEMKALGVGFATIKVLE-NGNLPVTEITKEGGKCKTVSVTFKKTEEPGKLGvefDEYAGGRKV 78
                          90       100       110       120       130       140
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*
gi 187280837  103 KLLKATSENLVFYDENVDRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHED 167
Cdd:pfam00061  79 KVLTTDYDNYLIFYQKGDKDGKTTIVRELYGRDPELSPELLEKFKKFLKELGIDEENIVRLYQKD 143
 
Name Accession Description Interval E-value
lipocalin_OBP-like cd19427
Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) ...
22-169 1.40e-76

Lipocalin odorant-binding protein and similar proteins; Odorant-binding proteins (OBPs) transport small hydrophobic molecules in the nasal mucosa of vertebrates. This subfamily includes mouse odorant-binding protein 1a (Obp1a), Obp1b, and probasin. Mouse Obp1a and Obp1b, which are expressed in the nasal mucosa, bind the chemical odorant 2-isobutyl-3-methoxypyrazine, and may form a OBPO1a/Opb1B heterodimer. Mouse probasin may play a role in the biology of the prostate gland. This group also includes hamster female-specific lacrimal gland protein (FLP) and aphrodisin. FLP may bind tear lipids or lipid-like pheromones found in hamster tears; aphrodisin is found in hamster vaginal discharge, carries pheromones, and stimulates copulatory behavior in males. This group also includes dog allergen Ca f4 which is expressed by tongue epithelial tissue and found in saliva and dander. Bovine OBP is believed to act as a homodimer, having the C-terminal alpha-helix of each monomer stacking against the beta-barrel of the other monomer; this is possible due to its lack of cysteines and therefore lack of disulfide bonds. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381202  Cd Length: 147  Bit Score: 225.22  E-value: 1.40e-76
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  22 HPELQGQWKTTAIMADNIDKIETSGPLELFVREITCDEGCQKMKVTFYVKQNGQCSLTTVTGYKQEDGkTFKNQYEGENN 101
Cdd:cd19427    1 LSELSGPWRTIYIAADNVEKIEEGGPLRTYFREIECDDECQKIKITFYVKKNGQCQETTVVGYKQEDG-TYVADYEGQNY 79
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 187280837 102 YKLLKATSENLVFYDENVDRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19427   80 FKVVSVSEDALVFYNVNVDRAGRKTKLTLLLGKGNSLTPEQKEKFKKLAEEKGIPEENIRNLLETDNC 147
Lipocalin pfam00061
Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small ...
26-167 9.74e-17

Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids. The family also encompasses the enzyme prostaglandin D synthase (EC:5.3.99.2). Alignment subsumes both the lipocalin and fatty acid binding protein signatures from PROSITE. This is supported on structural and functional grounds. The structure is an eight-stranded beta barrel.


Pssm-ID: 395015  Cd Length: 143  Bit Score: 72.47  E-value: 9.74e-17
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837   26 QGQWKTTAiMADNIDKIETSGPLELFVREITCDEgCQKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFK---NQYEGENNY 102
Cdd:pfam00061   1 SGKWYLIA-SANFNELEEEMKALGVGFATIKVLE-NGNLPVTEITKEGGKCKTVSVTFKKTEEPGKLGvefDEYAGGRKV 78
                          90       100       110       120       130       140
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*
gi 187280837  103 KLLKATSENLVFYDENVDRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHED 167
Cdd:pfam00061  79 KVLTTDYDNYLIFYQKGDKDGKTTIVRELYGRDPELSPELLEKFKKFLKELGIDEENIVRLYQKD 143
lipocalin_MUP-like cd19428
major urinary proteins (MUPs) and similar proteins; Mouse urine contains major urinary ...
21-169 4.80e-13

major urinary proteins (MUPs) and similar proteins; Mouse urine contains major urinary proteins (MUPs) which bind low molecular weight hydrophobic organic compounds such as urinary volatile pheromones such as the male-specific 2-sec-butyl-4,5-dihydrothiazole (SB2HT) which hastens puberty in female mice. The association between MUPs and these volatiles slows the release of the volatiles into the air from urine marks. MUPs may also act as pheromones themselves. MUPs, expressed in the nasal and vomeronasal mucosa, may be important for delivering urinary volatiles to receptors in the vomeronasal organ. This group includes MUPs encoded by central genes in the MUP cluster, as well as those encoded by peripheral genes such as Darcin/Mup20 which binds most of the male pheromone SB2HT in urine and was the first MUP shown to have male pheromonal activity in its own right. This group includes rat MUPs (also called alpha-2U globulins) and other lipocalins such as major horse allergen Equ c 1 and boar salivary lipocalin, a pheromone-binding protein specifically expressed in the submaxillary glands of the boar. It belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381203  Cd Length: 158  Bit Score: 63.23  E-value: 4.80e-13
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  21 DHPELQGQWKTTAIMADNIDKIETSGPLELFVREITCDEgcQKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFKNQYEGEN 100
Cdd:cd19428    7 DVSKINGEWYSILLASDKREKIEENGSMRVFVEHIHVLE--NSLAFKFHTKVNGECTELNLVADKTEKAGEYSVTYDGYN 84
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837 101 NYKLLKATSEN-LVFYDENVDRAsRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19428   85 TFTILETDYDNyIMFHLINFKNG-ETFQLMELYGREPDVSSDIKERFVKLCEEHGIIKENIIDLTKTDRC 153
lipocalin_9 cd19429
lipocalin 9; Lipocalin 9 (LCN9) is specifically expressed in the epididymis. It belongs to the ...
27-169 7.01e-11

lipocalin 9; Lipocalin 9 (LCN9) is specifically expressed in the epididymis. It belongs to the lipocalin/cytosolic fatty-acid binding protein family. Lipocalins are typically small extracellular proteins that bind small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids and form covalent or non-covalent complexes with soluble macromolecules as well as membrane bound-receptors. They are involved in many important functions, like ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior.


Pssm-ID: 381204  Cd Length: 156  Bit Score: 57.54  E-value: 7.01e-11
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  27 GQWKTTAIMADNIDKIETSGPLELFVREITCDEGcQKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFKNQYEGENNYKLLK 106
Cdd:cd19429   15 GVWYSISMASDNMTRIEENGDLRLFIRNIELLNN-GSLQFDFHFMLQGECVAVTVVCEKTKKNGEFSIAYEGENKVLLLE 93
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....
gi 187280837 107 AT-SENLVFYDENVdRASRKTKLLYILGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19429   94 TDySMYIIFYLQNI-RNGTETQVLALYGRSILLDKTHQRRFENICNKYGLGPRNTIDMAKKDFC 156
lipocalin_Can_f_2 cd19431
Minor allergen Can f 2; The minor dog lipocalin allergen Can f 2 is an important cause of ...
20-115 3.88e-06

Minor allergen Can f 2; The minor dog lipocalin allergen Can f 2 is an important cause of allergic sensitization in humans worldwide. It is one of two major allergens present in dog dander extracts, and is produced by tongue and the parotid gland (a major salivary gland). Can f 2 belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381206  Cd Length: 162  Bit Score: 44.69  E-value: 3.88e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  20 HDHP-----ELQGQWKTTAIMADNIDKIETSGPLELFVREITCDEGcqKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFKN 94
Cdd:cd19431    5 HEEPqggleELSGRWHSVALASNKSDLIKPWGHFRVFIHSMSAKDG--NLHGDILIPQDGQCEKVSLTAFKTATSNKFDL 82
                         90       100
                 ....*....|....*....|..
gi 187280837  95 QYEGENNYKLLKATSEN-LVFY 115
Cdd:cd19431   83 EYWGHNDLYLAEVDPKSyLILY 104
lipocalin_trichosorin-like cd19430
trichosurin and similar proteins; Trichosurin is a protein from the milk whey of the common ...
25-169 1.06e-05

trichosurin and similar proteins; Trichosurin is a protein from the milk whey of the common brushtail possum, Trichosurus Vulpecula, and shows a preference for binding small phenolic ligands. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381205  Cd Length: 153  Bit Score: 43.13  E-value: 1.06e-05
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  25 LQGQWKTTAIMADNIDKIETSGPLELFVREITCDEGcqKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFKNQYEGENN-YK 103
Cdd:cd19430   11 LSRHWHTVVLASSDRSLIEEEGPFRNFIQNITVESG--NLNGFFLTRKNGQCIPLYLTAFKTEEARQFKLNYYGTNDvYY 88
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 187280837 104 LLKATSE--NLVFYDENVDRASRKTKLlyiLGKGEALTHEQKERLTELATQKGIPAGNLKELAHEDTC 169
Cdd:cd19430   89 ESSKPNEyaKFIFYNYHDGKVNVVANL---FGRTPNLSNEIKKRFEEDFMNRGFRRENILDISEVDHC 153
lipocalin_FABP cd00301
lipocalin/cytosolic fatty acid-binding protein family; Lipocalins are diverse, mainly low ...
24-115 5.48e-04

lipocalin/cytosolic fatty acid-binding protein family; Lipocalins are diverse, mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules as well as membrane bound-receptors. They have a large beta-barrel ligand-binding cavity. Members include retinol-binding protein, retinoic acid-binding protein, complement protein C8 gamma, Can f 2, apolipoprotein D, extracellular fatty acid-binding protein, beta-lactoglobulin, oderant-binding protein, and bacterial lipocalin Blc. Lipocalins are involved in many important processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty acid-binding proteins also bind hydrophobic ligands in a non-covalent, reversible manner, and are involved in protection and shuttling of fatty acids within the cell, and in acquisition and removal of fatty acids from intracellular sites.


Pssm-ID: 381182  Cd Length: 109  Bit Score: 37.91  E-value: 5.48e-04
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 187280837  24 ELQGQWKTTAiMADNIdkiETSGPLELFVREITCDEGcQKMKVTFYVKQNGQCSLTTVTGYKQEDGKTFKNQYE---GEN 100
Cdd:cd00301    1 KFSGKWYEVA-SASNA---PEEDEGKCTTAEYTLEGN-GNLKVTNSFVRDGVCKSITGTLKKTDGPGKFTVTYPgytGKN 75
                         90
                 ....*....|....*.
gi 187280837 101 NYKLLKATSEN-LVFY 115
Cdd:cd00301   76 ELYVLSTDYDNyAIVY 91
 
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.
Help | Disclaimer | Write to the Help Desk
NCBI | NLM | NIH