Protein Domain : IPR013800

Type:  Domain Name:  STAT transcription factor, all-alpha domain
Description:  The STAT protein (Signal Transducers and Activators of Transcription) family contains transcription factors that are specifically activated to regulate gene transcription when cells encounter cytokines and growth factors, hence they act as signal transducers in the cytoplasm and transcription activators in the nucleus []. Binding of these factors to cell-surface receptors leads to receptor autophosphorylation at a tyrosine, the phosphotyrosine being recognised by the STAT SH2 domain, which mediates the recruitment of STAT proteins from the cytosol and their association with the activated receptor. The STAT proteins are then activated by phosphorylation via members of the JAK family of protein kinases, causing them to dimerise and translocated to the nucleus, where they bind to specific promoter sequences in target genes. In mammals, STATs comprise a family of seven structurally and functionally related proteins: Stat1, Stat2, Stat3, Stat4, Stat5a and Stat5b, Stat6. STAT proteins play a critical role in regulating innate and acquired host immune responses. Dysregulation of at least two STAT signalling cascades (i.e. Stat3 and Stat5) is associated with cellular transformation.Signalling through the JAK/STAT pathway is initiated when a cytokine binds to its corresponding receptor. This leads to conformational changes in the cytoplasmic portion of the receptor, initiating activation of receptor associated members of the JAK family of kinases. The JAKs, in turn, mediate phosphorylation at the specific receptor tyrosine residues, which then serve as docking sites for STATs and other signalling molecules. Once recruited to the receptor, STATs also become phosphorylated by JAKs, on a single tyrosine residue. Activated STATs dissociate from the receptor, dimerise, translocate to the nucleus and bind to members of the GAS (gamma activated site) family of enhancers.The seven STAT proteins identified in mammals range in size from 750 and 850 amino acids. The chromosomal distribution of these STATs, as well as the identification of STATs in more primitive eukaryotes, suggest that this family arose from a single primordial gene. STATs share structurally and functionally conserved domains including: an N-terminal domain that strengthens interactions between STAT dimers on adjacent DNA-binding sites; a coiled-coil STAT domain that is implicated in protein-protein interactions; a DNA-binding domain with an immunoglobulin-like fold similar to p53 tumour suppressor protein; an EF-hand-like linker domain connecting the DNA-binding and SH2 domains; an SH2 domain () that acts as a phosphorylation-dependent switch to control receptor recognition and DNA-binding; and a C-terminal transactivation domain []. The crystal structure of the N terminus of Stat4 reveals a dimer. The interface of this dimer is formed by a ring-shaped element consisting of five short helices. Several studies suggest that this N-terminal dimerisation promotes cooperativity of binding to tandem GAS elements and with the transcriptional coactivator CBP/p300.This entry represents the all-alpha helical domain, which consists of four long helices arranged in a bundle with a left-handed twist (coiled-coil), which in turn forms a right-handed superhelix. Short Name:  STAT_TF_alpha

0 Child Features

0 Contains

2 Cross Referencess

Identifier
PF01017
G3DSA:1.20.1050.20

0 Found In

4 GO Annotations

GO Term Gene Name
GO:0003700 IPR013800
GO:0004871 IPR013800
GO:0006355 IPR013800
GO:0007165 IPR013800

4 Ontology Annotations

GO Term Gene Name
GO:0003700 IPR013800
GO:0004871 IPR013800
GO:0006355 IPR013800
GO:0007165 IPR013800

1 Parent Features

DB identifier Type Name
IPR015988 Domain STAT transcription factor, coiled coil

645 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
437723 D8QP52 PAC:15420496 Selaginella moellendorffii 244  
evm.model.supercontig_336.6 PAC:16417799 Carica papaya 142  
evm.model.supercontig_38.38 PAC:16418873 Carica papaya 259  
Ciclev10022632m V4VY04 PAC:20806381 Citrus clementina 158  
Lus10028692 PAC:23164605 Linum usitatissimum 197  
Lus10028732 PAC:23164536 Linum usitatissimum 197  
Potri.010G077900.3 U5FY58 PAC:26982068 Populus trichocarpa 359  
Potri.019G014100.1 A9PH87 PAC:27026111 Populus trichocarpa 114  
Gorai.003G048500.2 A0A0D2QFR6 PAC:26797352 Gossypium raimondii 199  
Gorai.012G151400.2 A0A0D2V5M7 PAC:26826908 Gossypium raimondii 399  
Gorai.012G180700.1 A0A0D2V7W1 PAC:26828781 Gossypium raimondii 343  
Gorai.013G145900.2 A0A0D2SE33 PAC:26787529 Gossypium raimondii 289  
Thecc1EG001288t1 A0A061DID5 PAC:27432608 Theobroma cacao 215  
Migut.A00326.2.p PAC:28939850 Mimulus guttatus 165  
Glyma.06G062000.1.p A0A0R0JCS0 PAC:30554283 Glycine max 95  
Glyma.11G073700.1.p I1LHY1 PAC:30530364 Glycine max 234  
Glyma.11G073700.2.p A0A0R0HN96 PAC:30530365 Glycine max 233  
Glyma.13G090800.1.p I1LVX3 PAC:30501133 Glycine max 279  
Glyma.01G042800.1.p I1J5L0 PAC:30543314 Glycine max 339  
Glyma.01G042800.3.p I1J5L1 PAC:30543315 Glycine max 331  
Glyma.02G020800.1.p K7K600 PAC:30507477 Glycine max 331  
Glyma.02G020800.2.p K7K600 PAC:30507476 Glycine max 331  
Brara.C02620.1.p A0A397ZYI4 PAC:30616199 Brassica rapa FPsc 190  
Medtr2g091080.1 A0A072VM70 PAC:31067769 Medicago truncatula 762  
Medtr2g091250.1 A0A072VBW6 PAC:31064047 Medicago truncatula 1295  
SapurV1A.1034s0150.1.p PAC:31455481 Salix purpurea 114  
SapurV1A.1034s0150.2.p PAC:31455482 Salix purpurea 91  
Traes_2BS_CF72E2D31.7 PAC:31765524 Triticum aestivum 175  
Traes_5AL_BCE0E5EB9.1 PAC:31955292 Triticum aestivum 266  
Traes_5AL_30AECA9C9.3 PAC:31937540 Triticum aestivum 206  

2 Publications

First Author Title Year Journal Volume Pages PubMed ID
            12039028
            9630226