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Conserved domains on  [gi|205277417|ref|NP_001128519|]
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jun dimerization protein 2 isoform a [Homo sapiens]

Protein Classification

bZIP domain-containing protein( domain architecture ID 229439)

basic leucine zipper (bZIP) domain-containing protein is found in many DNA binding eukaryotic proteins such as Maf transcription factor, Caenorhabditis elegans skinhead-1, Drosophila melanogaster Mabiki, and Homo sapiens bZIP transcriptional factor ATF-like 3

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
bZIP super family cl21462
Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and ...
82-135 3.04e-21

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.


The actual alignment was detected with superfamily member cd14722:

Pssm-ID: 473870  Cd Length: 62  Bit Score: 81.35  E-value: 3.04e-21
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRH 135
Cdd:cd14722    9 NKVAAAKCRNKKKERTDCLQKESEKLETQNAELKRQIEELKNEKQHLIDMLNLH 62
 
Name Accession Description Interval E-value
bZIP_ATF3 cd14722
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-3 (ATF-3) and similar ...
82-135 3.04e-21

Basic leucine zipper (bZIP) domain of Activating Transcription Factor-3 (ATF-3) and similar proteins: a DNA-binding and dimerization domain; ATF-3 is a Basic leucine zipper (bZIP) transcription factor that is induced by various stress signals such as cytokines, genetoxic agents, or physiological stresses. It is implicated in cancer and host defense against pathogens. It negatively regulates the transcription of pro-inflammatory cytokines and is critical in preventing acute inflammatory syndromes. Mice deficient with ATF3 display increased susceptibility to endotoxic shock induced death. ATF3 dimerizes with Jun and other ATF proteins; the heterodimers function either as activators or repressors depending on the promoter context. 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: 269870  Cd Length: 62  Bit Score: 81.35  E-value: 3.04e-21
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRH 135
Cdd:cd14722    9 NKVAAAKCRNKKKERTDCLQKESEKLETQNAELKRQIEELKNEKQHLIDMLNLH 62
BRLZ smart00338
basic region leucin zipper;
82-134 9.73e-10

basic region leucin zipper;


Pssm-ID: 197664 [Multi-domain]  Cd Length: 65  Bit Score: 51.80  E-value: 9.73e-10
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|...
gi 205277417    82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNR 134
Cdd:smart00338  13 NREAARRSRERKKAEIEELERKVEQLEAENERLKKEIERLRRELEKLKSELEE 65
bZIP_1 pfam00170
bZIP transcription factor; The Pfam entry includes the basic region and the leucine zipper ...
82-128 1.07e-05

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: 41.21  E-value: 1.07e-05
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*..
gi 205277417   82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:pfam00170   9 NREAARRSRQRKQAYIEELERRVKALEGENKTLRSELEELKKEVEKL 55
COG2433 COG2433
Possible nuclease of RNase H fold, RuvC/YqgF family [General function prediction only];
83-136 5.02e-03

Possible nuclease of RNase H fold, RuvC/YqgF family [General function prediction only];


Pssm-ID: 441980 [Multi-domain]  Cd Length: 644  Bit Score: 36.37  E-value: 5.02e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  83 KVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRHR 136
Cdd:COG2433  401 KEHEERELTEEEEEIRRLEEQVERLEAEVEELEAELEEKDERIERLERELSEAR 454
 
Name Accession Description Interval E-value
bZIP_ATF3 cd14722
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-3 (ATF-3) and similar ...
82-135 3.04e-21

Basic leucine zipper (bZIP) domain of Activating Transcription Factor-3 (ATF-3) and similar proteins: a DNA-binding and dimerization domain; ATF-3 is a Basic leucine zipper (bZIP) transcription factor that is induced by various stress signals such as cytokines, genetoxic agents, or physiological stresses. It is implicated in cancer and host defense against pathogens. It negatively regulates the transcription of pro-inflammatory cytokines and is critical in preventing acute inflammatory syndromes. Mice deficient with ATF3 display increased susceptibility to endotoxic shock induced death. ATF3 dimerizes with Jun and other ATF proteins; the heterodimers function either as activators or repressors depending on the promoter context. 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: 269870  Cd Length: 62  Bit Score: 81.35  E-value: 3.04e-21
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRH 135
Cdd:cd14722    9 NKVAAAKCRNKKKERTDCLQKESEKLETQNAELKRQIEELKNEKQHLIDMLNLH 62
bZIP_Fos_like cd14699
Basic leucine zipper (bZIP) domain of the oncogene Fos (Fos)-like transcription factors: a ...
82-132 2.48e-11

Basic leucine zipper (bZIP) domain of the oncogene Fos (Fos)-like transcription factors: a DNA-binding and dimerization domain; This subfamily is composed of Fos proteins (c-Fos, FosB, Fos-related antigen 1 (Fra-1), and Fra-2), Activating Transcription Factor-3 (ATF-3), and similar proteins. Fos proteins are members of the activator protein-1 (AP-1) complex, which is mainly composed of bZIP dimers of the Jun and Fos families, and to a lesser extent, ATF and musculoaponeurotic fibrosarcoma (Maf) families. The broad combinatorial possibilities for various dimers determine binding specificity, affinity, and the spectrum of regulated genes. The AP-1 complex is implicated in many cell functions including proliferation, apoptosis, survival, migration, tumorigenesis, and morphogenesis, among others. ATF3 is induced by various stress signals such as cytokines, genotoxic agents, or physiological stresses. It is implicated in cancer and host defense against pathogens. It negatively regulates the transcription of pro-inflammatory cytokines and is critical in preventing acute inflammatory syndromes. ATF3 dimerizes with Jun and other ATF proteins; the heterodimers function either as activators or repressors depending on the promoter context. 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: 269847 [Multi-domain]  Cd Length: 59  Bit Score: 55.73  E-value: 2.48e-11
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|.
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILML 132
Cdd:cd14699    9 NKVAAAKCRQRRRELMEELQAEVEQLEDENEKLQSEIANLRSEKEQLEELL 59
bZIP_Fos cd14721
Basic leucine zipper (bZIP) domain of the oncogene Fos (Fos): a DNA-binding and dimerization ...
82-135 1.04e-10

Basic leucine zipper (bZIP) domain of the oncogene Fos (Fos): a DNA-binding and dimerization domain; Fos proteins are members of the activator protein-1 (AP-1) complex, which is mainly composed of Basic leucine zipper (bZIP) dimers of the Jun and Fos families, and to a lesser extent, the activating transcription factor (ATF) and musculoaponeurotic fibrosarcoma (Maf) families. The broad combinatorial possibilities for various dimers determine binding specificity, affinity, and the spectrum of regulated genes. The AP-1 complex is implicated in many cell functions including proliferation, apoptosis, survival, migration, tumorigenesis, and morphogenesis, among others. There are four Fos proteins: c-Fos, FosB, Fos-related antigen 1 (Fra-1), and Fra-2. In addition, FosB also exists as smaller splice variants FosB2 and deltaFosB2. They all contain an N-terminal region and a bZIP domain. c-Fos and FosB also contain a C-terminal transactivation domain which is absent in Fra-1/2 and the smaller FosB variants. Fos proteins can only heterodimerize with Jun and other AP-1 proteins, but cannot homodimerize. Fos:Jun heterodimers are more stable and can bind DNA with more affinity that Jun:Jun homodimers. Fos proteins can enhance the trans-activating and transforming properties of Jun proteins. 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: 269869 [Multi-domain]  Cd Length: 62  Bit Score: 54.29  E-value: 1.04e-10
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRH 135
Cdd:cd14721    9 NKLAAAKCRQRRVDLTNTLQAETEQLEDEKSSLQNEIANLQKQKEQLEFLLAAH 62
BRLZ smart00338
basic region leucin zipper;
82-134 9.73e-10

basic region leucin zipper;


Pssm-ID: 197664 [Multi-domain]  Cd Length: 65  Bit Score: 51.80  E-value: 9.73e-10
                           10        20        30        40        50
                   ....*....|....*....|....*....|....*....|....*....|...
gi 205277417    82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNR 134
Cdd:smart00338  13 NREAARRSRERKKAEIEELERKVEQLEAENERLKKEIERLRRELEKLKSELEE 65
bZIP_ATF2 cd14687
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-2 (ATF-2) and similar ...
82-134 2.67e-09

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: 50.60  E-value: 2.67e-09
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|...
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNR 134
Cdd:cd14687    9 NRIAASKCRQRKKQWVQQLEEKVRKLESENKALKAEVDKLREEVLDLKNLLLA 61
bZIP cd14686
Basic leucine zipper (bZIP) domain of bZIP transcription factors: a DNA-binding and ...
82-126 5.13e-08

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: 47.15  E-value: 5.13e-08
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQ 126
Cdd:cd14686    8 NREAARRSRERKKERIEELEEEVEELEEENEELKAELEELRAEVE 52
bZIP_ATF4 cd14692
Basic leucine zipper (bZIP) domain of Activating Transcription Factor-4 (ATF-4) and similar ...
82-128 1.34e-07

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: 46.03  E-value: 1.34e-07
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14692   10 NKNAATRYRQKKREEKEELLSEEEELEDRNRELKDEVEELQREINYL 56
bZIP_XBP1 cd14691
Basic leucine zipper (bZIP) domain of X-box binding protein 1 (XBP1) and similar proteins: a ...
82-128 4.16e-07

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: 44.89  E-value: 4.16e-07
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14691   11 NRVAAQTARDRKKARMDELEERVRELEEENQKLRAENESLRARNEDL 57
bZIP_Zip1 cd14705
Basic leucine zipper (bZIP) domain of Fungal Zip1-like transcription factors: a DNA-binding ...
82-128 1.38e-06

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: 43.29  E-value: 1.38e-06
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14705    8 NTAASARFRAKKKQREQELEEKLKELEERIKELERRLDELESENKFL 54
bZIP_1 pfam00170
bZIP transcription factor; The Pfam entry includes the basic region and the leucine zipper ...
82-128 1.07e-05

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: 41.21  E-value: 1.07e-05
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*..
gi 205277417   82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:pfam00170   9 NREAARRSRQRKQAYIEELERRVKALEGENKTLRSELEELKKEVEKL 55
bZIP_2 pfam07716
Basic region leucine zipper;
82-124 4.41e-05

Basic region leucine zipper;


Pssm-ID: 462244 [Multi-domain]  Cd Length: 51  Bit Score: 39.12  E-value: 4.41e-05
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|...
gi 205277417   82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQE 124
Cdd:pfam07716   9 NNEAAKRSREKKKQKEEELEERVKELERENAQLRQKVEQLEKE 51
bZIP_CREBL2 cd14709
Basic leucine zipper (bZIP) domain of Cyclic AMP-responsive element-binding protein-like 2 ...
82-128 1.35e-04

Basic leucine zipper (bZIP) domain of Cyclic AMP-responsive element-binding protein-like 2 (CREBL2): a DNA-binding and dimerization domain; CREBL2 is a bZIP transcription factor that interacts with CREB and plays a critical role in adipogenesis and lipogenesis. Its overexpression upregulates the expression of PPARgamma and CEBPalpha to promote adipogenesis as well as accelerate lipogenesis by increasing GLUT1 and GLUT4. 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: 269857 [Multi-domain]  Cd Length: 56  Bit Score: 38.08  E-value: 1.35e-04
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14709    9 NRQSARESRDRKKLRYQYLEQLVADREREILLLREELEMYKQWCEEL 55
bZIP_GCN4 cd12193
Basic leucine zipper (bZIP) domain of General control protein GCN4: a DNA-binding and ...
82-126 3.65e-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: 36.78  E-value: 3.65e-04
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQ 126
Cdd:cd12193   10 NTLAARRSRARKLEEMEELEKRVEELEAENEELKTRAEVLEAEAR 54
bZIP_Jun cd14696
Basic leucine zipper (bZIP) domain of Jun proteins and similar proteins: a DNA-binding and ...
82-128 1.11e-03

Basic leucine zipper (bZIP) domain of Jun proteins and similar proteins: a DNA-binding and dimerization domain; Jun is a member of the activator protein-1 (AP-1) complex, which is mainly composed of Basic leucine zipper (bZIP) dimers of the Jun and Fos families, and to a lesser extent, the activating transcription factor (ATF) and musculoaponeurotic fibrosarcoma (Maf) families. The broad combinatorial possibilities for various dimers determine binding specificity, affinity, and the spectrum of regulated genes. The AP-1 complex is implicated in many cell functions including proliferation, apoptosis, survival, migration, tumorigenesis, and morphogenesis, among others. There are three Jun proteins: c-Jun, JunB, and JunD. c-Jun is the most potent transcriptional activator of the AP-1 proteins. Both c-Jun and JunB are essential during development; deletion of either results in embryonic lethality in mice. c-Jun is essential in hepatogenesis and liver erythropoiesis, while JunB is required in vasculogenesis and angiogenesis in extraembryonic tissues. While JunD is dispensable in embryonic development, it is involved in transcription regulation of target genes that help cells to cope with environmental signals. 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: 269844 [Multi-domain]  Cd Length: 61  Bit Score: 35.63  E-value: 1.11e-03
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14696    9 NRIAASKCRKRKLERIARLEDKVKELKNQNSELTSTASLLREQVCQL 55
bZIP_Maf pfam03131
bZIP Maf transcription factor; Maf transcription factors contain a conserved basic region ...
82-130 1.77e-03

bZIP Maf transcription factor; Maf transcription factors contain a conserved basic region leucine zipper (bZIP) domain, which mediates their dimerization and DNA binding property. Thus, this family is probably related to pfam00170. This family also includes the DNA_binding domain of Skn-1, this domain lacks the leucine zipper found in other bZip domains, and binds DNA is a monomer.


Pssm-ID: 427158 [Multi-domain]  Cd Length: 92  Bit Score: 35.78  E-value: 1.77e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*....
gi 205277417   82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLIL 130
Cdd:pfam03131  38 NRGYAQSCRKRRLQQKESLEKERSELREQLERLVQELSRLRQELDALKR 86
bZIP_BATF cd14701
Basic leucine zipper (bZIP) domain of BATF proteins: a DNA-binding and dimerization domain; ...
82-128 3.30e-03

Basic leucine zipper (bZIP) domain of BATF proteins: a DNA-binding and dimerization domain; Basic leucine zipper (bZIP) transcription factor ATF-like (BATF or SFA2), BATF2 (or SARI) and BATF3 form heterodimers with Jun proteins. They function as inhibitors of AP-1-driven transcription. Unlike most bZIP transcription factors that contain additional domains, BATF and BATF3 contain only the the bZIP DNA-binding and dimerization domain. BATF2 contains an additional C-terminal domain of unknown function. BATF:Jun hetrodimers preferentially bind to TPA response elements (TREs) with the consensus sequence TGA(C/G)TCA, and can also bind to a TGACGTCA cyclic AMP response element (CRE). In addition to negative regulation, BATF proteins also show positive transcriptional activities in the development of classical dendritic cells and T helper cell subsets, and in antibody production. 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: 269849 [Multi-domain]  Cd Length: 58  Bit Score: 34.37  E-value: 3.30e-03
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14701   11 NRDAAQRSRQKQTEKADKLHEESESLERANAALRKEIKDLTEELKYL 57
bZIP_CNC cd14698
Basic leucine zipper (bZIP) domain of Cap'n'Collar (CNC) transcription factors: a DNA-binding ...
82-128 3.68e-03

Basic leucine zipper (bZIP) domain of Cap'n'Collar (CNC) transcription factors: a DNA-binding and dimerization domain; CNC proteins form a subfamily of Basic leucine zipper (bZIP) transcription factors that are defined by a conserved 43-amino acid region (called the CNC domain) located N-terminal to the bZIP DNA-binding domain. This subfamily includes Drosophila Cnc and four vertebrate counterparts, NFE2 (nuclear factor, erythroid-derived 2), NFE2-like 1 or NFE2-related factor 1 (NFE2L1 or Nrf1), NFE2L2 (or Nrf2), and NFE2L3 (or Nrf3). It also includes BACH1 and BACH2, which contain an additional BTB domain (Broad complex###Tramtrack###Bric-a-brac domain, also known as the POZ [poxvirus and zinc finger] domain). CNC proteins function during development and/or contribute in maintaining homeostasis during stress responses. In flies, Cnc functions both in development and in stress responses. In vertebrates, several CNC proteins encoded by distinct genes show varying functions and expression patterns. NFE2 is required for the proper development of platelets while the three Nrfs function in stress responses. Nrf2, the most extensively studied member of this subfamily, acts as a xenobiotic-activated receptor that regulates the adaptive response to oxidants and electrophiles. BACH1 forms heterodimers with small Mafs such as MafK to function as a repressor of heme oxygenase-1 (HO-1) gene (Hmox-1) enhancers. BACH2 is a B-cell specific transcription factor that plays a critical role in oxidative stress-mediated apoptosis. 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: 269846 [Multi-domain]  Cd Length: 68  Bit Score: 34.54  E-value: 3.68e-03
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQL 128
Cdd:cd14698   14 NKVAAQNCRKRKLDQISTLEDEVDELKEEKEKLLKERDELEAETREM 60
COG2433 COG2433
Possible nuclease of RNase H fold, RuvC/YqgF family [General function prediction only];
83-136 5.02e-03

Possible nuclease of RNase H fold, RuvC/YqgF family [General function prediction only];


Pssm-ID: 441980 [Multi-domain]  Cd Length: 644  Bit Score: 36.37  E-value: 5.02e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....
gi 205277417  83 KVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQERQQLILMLNRHR 136
Cdd:COG2433  401 KEHEERELTEEEEEIRRLEEQVERLEAEVEELEAELEEKDERIERLERELSEAR 454
bZIP_BmCbz-like cd14813
Basic leucine zipper (bZIP) domain of Bombyx mori chorion b-ZIP transcription factor and ...
82-124 5.29e-03

Basic leucine zipper (bZIP) domain of Bombyx mori chorion b-ZIP transcription factor and similar bZIP domains; Bombyx mori chorion b-ZIP transcription factor, is encoded by the Cbz gene. 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: 269875 [Multi-domain]  Cd Length: 52  Bit Score: 33.50  E-value: 5.29e-03
                         10        20        30        40
                 ....*....|....*....|....*....|....*....|...
gi 205277417  82 NKVAAARCRNKKKERTEFLQRESERLELMNAELKTQIEELKQE 124
Cdd:cd14813    8 NNEASRRSRLNRKQKEQEMQKEAEELERENEALKVKVEELEKE 50
bZIP_AUREO-like cd14809
Basic leucine zipper (bZIP) domain of blue light (BL) receptor aureochrome (AUREO) and similar ...
82-138 9.11e-03

Basic leucine zipper (bZIP) domain of blue light (BL) receptor aureochrome (AUREO) and similar bZIP domains; AUREO is a BL-activated transcription factor specific to phototrophic stramenopiles. It has a bZIP and a BL-sensing light-oxygen voltage (LOV) domain. It has been shown to mediate BL-induced branching and regulate the development of the sex organ in Vaucheria frigida. 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. This subgroup also includes the Epstein-Barr virus (EBV) immediate-early transcription factor ZEBRA (BZLF1, Zta, Z, EB1). ZEBRA exhibits a variant of the bZIP fold, it has a unique dimer interface and a substantial hydrophobic pocket; it has a C-terminal moiety which stabilizes the coiled coil involved in dimer formation. ZEBRA functions to trigger the switch of EBV's biphasic infection cycle from latent to lytic infection. It activates the promoters of EBV lytic genes by binding ZEBRA response elements (ZREs) and inducing a cascade of expression of over 50 viral genes. It also down regulates latency-associated promoters, is an essential replication factor, induces host cell cycle arrest, and alters cellular immune responses and transcription factor activity.


Pssm-ID: 269871 [Multi-domain]  Cd Length: 52  Bit Score: 32.99  E-value: 9.11e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*..
gi 205277417  82 NKVAAARCRNKKKertEFLQreserlelmnaELKTQIEELKQERQQLILMLNRHRPT 138
Cdd:cd14809    8 NREHARKTRLRKK---AYLE-----------SLKEQVAALQAENQRLRQQIRQAAPA 50
 
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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