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Conserved domains on  [gi|1063716270|ref|NP_001325572|]
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basic leucine zipper 24 [Arabidopsis thaliana]

Protein Classification

bZIP transcription factor( domain architecture ID 10543237)

basic leucine zipper (bZIP) transcription factor binds to the promoter regions of genes to control their expression

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
bZIP_2 pfam07716
Basic region leucine zipper;
65-107 5.31e-09

Basic region leucine zipper;


:

Pssm-ID: 462244 [Multi-domain]  Cd Length: 51  Bit Score: 49.91  E-value: 5.31e-09
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|...
gi 1063716270  65 GNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:pfam07716   8 KNNEAAKRSREKKKQKEEELEERVKELERENAQLRQKVEQLEK 50
 
Name Accession Description Interval E-value
bZIP_2 pfam07716
Basic region leucine zipper;
65-107 5.31e-09

Basic region leucine zipper;


Pssm-ID: 462244 [Multi-domain]  Cd Length: 51  Bit Score: 49.91  E-value: 5.31e-09
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|...
gi 1063716270  65 GNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:pfam07716   8 KNNEAAKRSREKKKQKEEELEERVKELERENAQLRQKVEQLEK 50
BRLZ smart00338
basic region leucin zipper;
60-121 9.16e-08

basic region leucin zipper;


Pssm-ID: 197664 [Multi-domain]  Cd Length: 65  Bit Score: 47.17  E-value: 9.16e-08
                           10        20        30        40        50        60
                   ....*....|....*....|....*....|....*....|....*....|....*....|..
gi 1063716270   60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLqsqEMVETELIRLRALLVE 121
Cdd:smart00338   7 RRRRERNREAARRSRERKKAEIEELERKVEQLEAENERLKKEI---ERLRRELEKLKSELEE 65
bZIP cd14686
Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and ...
60-107 2.02e-07

Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and dimerization domain; Basic leucine zipper (bZIP) factors comprise one of the most important classes of enhancer-type transcription factors. They act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes including cell survival, learning and memory, lipid metabolism, and cancer progression, among others. They also play important roles in responses to stimuli or stress signals such as cytokines, genotoxic agents, or physiological stresses. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269834 [Multi-domain]  Cd Length: 52  Bit Score: 46.00  E-value: 2.02e-07
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*...
gi 1063716270  60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:cd14686     2 ERRRERNREAARRSRERKKERIEELEEEVEELEEENEELKAELEELRA 49
 
Name Accession Description Interval E-value
bZIP_2 pfam07716
Basic region leucine zipper;
65-107 5.31e-09

Basic region leucine zipper;


Pssm-ID: 462244 [Multi-domain]  Cd Length: 51  Bit Score: 49.91  E-value: 5.31e-09
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|...
gi 1063716270  65 GNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:pfam07716   8 KNNEAAKRSREKKKQKEEELEERVKELERENAQLRQKVEQLEK 50
BRLZ smart00338
basic region leucin zipper;
60-121 9.16e-08

basic region leucin zipper;


Pssm-ID: 197664 [Multi-domain]  Cd Length: 65  Bit Score: 47.17  E-value: 9.16e-08
                           10        20        30        40        50        60
                   ....*....|....*....|....*....|....*....|....*....|....*....|..
gi 1063716270   60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLqsqEMVETELIRLRALLVE 121
Cdd:smart00338   7 RRRRERNREAARRSRERKKAEIEELERKVEQLEAENERLKKEI---ERLRRELEKLKSELEE 65
bZIP cd14686
Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and ...
60-107 2.02e-07

Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and dimerization domain; Basic leucine zipper (bZIP) factors comprise one of the most important classes of enhancer-type transcription factors. They act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes including cell survival, learning and memory, lipid metabolism, and cancer progression, among others. They also play important roles in responses to stimuli or stress signals such as cytokines, genotoxic agents, or physiological stresses. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269834 [Multi-domain]  Cd Length: 52  Bit Score: 46.00  E-value: 2.02e-07
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*...
gi 1063716270  60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:cd14686     2 ERRRERNREAARRSRERKKERIEELEEEVEELEEENEELKAELEELRA 49
bZIP_YAP cd14688
Basic leucine zipper (bZIP) domain of Yeast Activator Protein (YAP) and similar proteins: a ...
66-119 5.69e-05

Basic leucine zipper (bZIP) domain of Yeast Activator Protein (YAP) and similar proteins: a DNA-binding and dimerization domain; This subfamily is composed predominantly of AP-1-like transcription factors including Saccharomyces cerevisiae YAPs, Schizosaccharomyces pombe PAP1, and similar proteins. Members of this subfamily belong to the Basic leucine zipper (bZIP) family of transcription factors. The YAP subfamily is composed of eight members (YAP1-8) which may all be involved in stress responses. YAP1 is the major oxidative stress regulator and is also involved in iron metabolism (like YAP5) and detoxification of arsenic (like YAP8). YAP2 is involved in cadmium stress responses while YAP4 and YAP6 play roles in osmotic stress. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269836 [Multi-domain]  Cd Length: 63  Bit Score: 39.63  E-value: 5.69e-05
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEMVETELIRLRALL 119
Cdd:cd14688    10 NREAQRAFRERKKERIKELEQRVAELEEELAELEEELQELRAELRELESELQSL 63
bZIP_XBP1 cd14691
Basic leucine zipper (bZIP) domain of X-box binding protein 1 (XBP1) and similar proteins: a ...
66-106 2.49e-04

Basic leucine zipper (bZIP) domain of X-box binding protein 1 (XBP1) and similar proteins: a DNA-binding and dimerization domain; XBP1, a member of the Basic leucine zipper (bZIP) family, is the key transcription factor that orchestrates the unfolded protein response (UPR). It is the most conserved component of the UPR and is critical for cell fate determination in response to ER stress. The inositol-requiring enzyme 1 (IRE1)-XBP1 pathway is one of the three major sensors at the ER membrane that initiates the UPR upon activation. IRE1, a type I transmembrane protein kinase and endoribonuclease, oligomerizes upon ER stress leading to its increased activity. It splices the XBP1 mRNA, producing a variant that translocates to the nucleus and activates its target genes, which are involved in protein folding, degradation, and trafficking. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269839 [Multi-domain]  Cd Length: 58  Bit Score: 37.57  E-value: 2.49e-04
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|.
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQE 106
Cdd:cd14691    11 NRVAAQTARDRKKARMDELEERVRELEEENQKLRAENESLR 51
bZIP_GCN4 cd12193
Basic leucine zipper (bZIP) domain of General control protein GCN4: a DNA-binding and ...
66-107 2.54e-04

Basic leucine zipper (bZIP) domain of General control protein GCN4: a DNA-binding and dimerization domain; GCN4 was identified in Saccharomyces cerevisiae from mutations in a deficiency in activation with the general amino acid control pathway. GCN4 encodes a trans-activator of amino acid biosynthetic genes containing 2 acidic activation domains and a C-terminal bZIP domain. In amino acid-deprived cells, GCN4 is up-regulated leading to transcriptional activation of genes encoding amino acid biosynthetic enzymes. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269833 [Multi-domain]  Cd Length: 54  Bit Score: 37.55  E-value: 2.54e-04
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|..
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:cd12193    10 NTLAARRSRARKLEEMEELEKRVEELEAENEELKTRAEVLEA 51
bZIP_ATF4 cd14692
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-4 (ATF-4) and similar ...
66-122 4.00e-04

Basic leucine zipper (bZIP) domain of Activating Transcription Factor-4 (ATF-4) and similar proteins: a DNA-binding and dimerization domain; ATF-4 was also isolated and characterized as the cAMP-response element binding protein 2 (CREB2). It is a Basic leucine zipper (bZIP) transcription factor that has been reported to act as both an activator or repressor. It is a critical component in both the unfolded protein response (UPR) and amino acid response (AAR) pathways. Under certain stress conditions, ATF-4 transcription is increased; accumulation of ATF-4 induces the expression of genes involved in amino acid metabolism and transport, mitochondrial function, redox chemistry, and others that ensure protein synthesis and recovery from stress. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269840 [Multi-domain]  Cd Length: 63  Bit Score: 37.17  E-value: 4.00e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*..
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSqemVETELIRLRALLVEM 122
Cdd:cd14692    10 NKNAATRYRQKKREEKEELLSEEEELEDRNRELKDEVEE---LQREINYLKDLLREV 63
bZIP_1 pfam00170
bZIP transcription factor; The Pfam entry includes the basic region and the leucine zipper ...
59-104 4.81e-04

bZIP transcription factor; The Pfam entry includes the basic region and the leucine zipper region.


Pssm-ID: 395118 [Multi-domain]  Cd Length: 60  Bit Score: 36.98  E-value: 4.81e-04
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*.
gi 1063716270  59 NKKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQS 104
Cdd:pfam00170   2 REKRKQSNREAARRSRQRKQAYIEELERRVKALEGENKTLRSELEE 47
bZIP_ATF2 cd14687
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-2 (ATF-2) and similar ...
66-121 7.31e-04

Basic leucine zipper (bZIP) domain of Activating Transcription Factor-2 (ATF-2) and similar proteins: a DNA-binding and dimerization domain; ATF-2 is a sequence-specific DNA-binding protein that belongs to the Basic leucine zipper (bZIP) family of transcription factors. In response to stress, it activates a variety of genes including cyclin A, cyclin D, and c-Jun. ATF-2 also plays a role in the DNA damage response that is independent of its transcriptional activity. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269835 [Multi-domain]  Cd Length: 61  Bit Score: 36.35  E-value: 7.31e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*.
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQsqeMVETELIRLRALLVE 121
Cdd:cd14687     9 NRIAASKCRQRKKQWVQQLEEKVRKLESENKALKAEVD---KLREEVLDLKNLLLA 61
bZIP_CREB1 cd14690
Basic leucine zipper (bZIP) domain of Cyclic AMP-responsive element-binding protein 1 (CREB1) ...
60-104 1.16e-03

Basic leucine zipper (bZIP) domain of Cyclic AMP-responsive element-binding protein 1 (CREB1) and similar proteins: a DNA-binding and dimerization domain; CREB1 is a Basic leucine zipper (bZIP) transcription factor that plays a role in propagating signals initiated by receptor activation through the induction of cAMP-responsive genes. Because it responds to many signal transduction pathways, CREB1 is implicated to function in many processes including learning, memory, circadian rhythm, immune response, and reproduction, among others. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269838 [Multi-domain]  Cd Length: 55  Bit Score: 35.68  E-value: 1.16e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*
gi 1063716270  60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQS 104
Cdd:cd14690     3 QLRLEKNREAARECRRKKKEYVKCLENRVAVLENENKELREELKI 47
bZIP_plant_BZIP46 cd14707
Basic leucine zipper (bZIP) domain of uncharaterized Plant BZIP transcription factors: a ...
60-105 1.44e-03

Basic leucine zipper (bZIP) domain of uncharaterized Plant BZIP transcription factors: a DNA-binding and dimerization domain; This subfamily is composed of uncharacterized plant bZIP transciption factors with similarity to Glycine max BZIP46, which may be a drought-responsive gene. Plant bZIPs are involved in developmental and physiological processes in response to stimuli/stresses such as light, hormones, and temperature changes. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269855 [Multi-domain]  Cd Length: 55  Bit Score: 35.37  E-value: 1.44e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*.
gi 1063716270  60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEqFLRKLQSQ 105
Cdd:cd14707     3 QRRMIKNRESAARSRARKQAYTNELELEVAHLKEENA-RLKRQQEE 47
bZIP_u3 cd14812
Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and ...
62-110 1.66e-03

Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and dimerization domain; uncharacterized subfamily; Basic leucine zipper (bZIP) factors comprise one of the most important classes of enhancer-type transcription factors. They act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes including cell survival, learning and memory, lipid metabolism, and cancer progression, among others. They also play important roles in responses to stimuli or stress signals such as cytokines, genotoxic agents, or physiological stresses. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269874 [Multi-domain]  Cd Length: 52  Bit Score: 35.27  E-value: 1.66e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*....
gi 1063716270  62 RLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEMVET 110
Cdd:cd14812     4 RLIRNRAAAQLSRQRKKEEVEELEARVKELEAENRRLRQLLAQPEAEAS 52
bZIP_HBP1b-like cd14708
Basic leucine zipper (bZIP) domain of uncharaterized BZIP transcription factors with ...
60-103 1.87e-03

Basic leucine zipper (bZIP) domain of uncharaterized BZIP transcription factors with similarity to Triticum aestivum HBP-1b: a DNA-binding and dimerization domain; This subfamily is composed primarily of uncharacterized bZIP transciption factors from flowering plants, mosses, clubmosses, and algae. Included in this subfamily is wheat HBP-1b, which contains a C-terminal DOG1 domain, which is a specific plant regulator for seed dormancy. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269856 [Multi-domain]  Cd Length: 53  Bit Score: 35.35  E-value: 1.87e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....
gi 1063716270  60 KKRLCGNREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQ 103
Cdd:cd14708     3 LRRLAQNREAARKSRLRKKAYVQQLEESVEKLKQLEQELQRARQ 46
bZIP_Zip1 cd14705
Basic leucine zipper (bZIP) domain of Fungal Zip1-like transcription factors: a DNA-binding ...
66-107 5.12e-03

Basic leucine zipper (bZIP) domain of Fungal Zip1-like transcription factors: a DNA-binding and dimerization domain; This subfamily is composed of fungal bZIP transcription factors including Schizosaccharomyces pombe Zip1, Saccharomyces cerevisiae Methionine-requiring protein 28 (Met28p), and Neurospora crassa cys-3, among others. Zip1 is required for the production of key proteins involved in sulfur metabolism and also plays a role in cadmium response. Met28p acts as a cofactor of Met4p, a transcriptional activator of the sulfur metabolic network; it stabilizes DNA:Met4 complexes. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269853 [Multi-domain]  Cd Length: 55  Bit Score: 34.04  E-value: 5.12e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|..
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEQFLRKLQSQEM 107
Cdd:cd14705     8 NTAASARFRAKKKQREQELEEKLKELEERIKELERRLDELES 49
bZIP_CEBP cd14693
Basic leucine zipper (bZIP) domain of CCAAT/enhancer-binding protein (CEBP) and similar ...
66-116 6.38e-03

Basic leucine zipper (bZIP) domain of CCAAT/enhancer-binding protein (CEBP) and similar proteins: a DNA-binding and dimerization domain; CEBPs (or C/EBPs) are Basic leucine zipper (bZIP) transcription factors that regulate the cell cycle, differentiation, growth, survival, energy metabolism, innate and adaptive immunity, and inflammation, among others. They are also associated with cancer and viral disease. There are six CEBP proteins in mammalian cells including CEBPA (alpha), CEBPB (beta), CEBPG (gamma), CEBPD (delta), and CEBPE (epsilon), which all contain highly conserved bZIP domains at their C-termini and variations at their N-terminal regions. Each possesses unique properties to regulate cell type-specific growth and differentiation. The sixth isoform, CEBPZ (zeta), lacks an intact DNA-binding domain and is excluded from this subfamily. bZIP factors act in networks of homo and heterodimers in the regulation of a diverse set of cellular processes. The bZIP structural motif contains a basic region and a leucine zipper, composed of alpha helices with leucine residues 7 amino acids apart, which stabilize dimerization with a parallel leucine zipper domain. Dimerization of leucine zippers creates a pair of the adjacent basic regions that bind DNA and undergo conformational change. Dimerization occurs in a specific and predictable manner resulting in hundreds of dimers having unique effects on transcription.


Pssm-ID: 269841 [Multi-domain]  Cd Length: 60  Bit Score: 33.68  E-value: 6.38e-03
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|..
gi 1063716270  66 NREAVRKYREKKKARTAYLEDEVMRLQSLNEqflrKLQSQ-EMVETELIRLR 116
Cdd:cd14693    12 NNIAVRKSREKAKQRQLETQQKVQELRKENE----RLQKRvELLTKELSVLK 59
 
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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