Association of STATs with relatives and friends

Members of the STAT family of transcription factors are present in species as diverse as mammals, insects and slime molds. Discovered as mediators of interferon-induced signals, the STATs were later shown to drive many different ligand-induced responses through receptor-induced tyrosine phosphorylat...

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Published inTrends in Cell Biology Vol. 10; no. 3; pp. 106 - 111
Main Authors Chatterjee-Kishore, Moitreyee, Akker, Focco van den, Stark, George R
Format Book Review Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.03.2000
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Abstract Members of the STAT family of transcription factors are present in species as diverse as mammals, insects and slime molds. Discovered as mediators of interferon-induced signals, the STATs were later shown to drive many different ligand-induced responses through receptor-induced tyrosine phosphorylation and dimerization. STAT1 also functions as a transcription factor, essential for the efficient constitutive expression of certain genes, without needing tyrosine phosphorylation, and phosphorylated STAT1 dimers mediate suppression – rather than activation – of some genes. STATs are present in the cytoplasm of untreated cells in multiprotein complexes, which might aid in their nuclear translocation and differential binding to DNA, thus contributing to the specificity of STAT action. This review explores the diverse protein–protein interactions that underlie the multiple functions of the STATs.
AbstractList Members of the STAT family of transcription factors are present in species as diverse as mammals, insects and slime molds. Discovered as mediators of interferon-induced signals, the STATs were later shown to drive many different ligand-induced responses through receptor-induced tyrosine phosphorylation and dimerization. STAT1 also functions as a transcription factor, essential for the efficient constitutive expression of certain genes, without needing tyrosine phosphorylation, and phosphorylated STAT1 dimers mediate suppression - rather than activation - of some genes. STATs are present in the cytoplasm of untreated cells in multiprotein complexes, which might aid in their nuclear translocation and differential binding to DNA, thus contributing to the specificity of STAT action. This review explores the diverse protein-protein interactions that underlie the multiple functions of the STATs.
Author Akker, Focco van den
Chatterjee-Kishore, Moitreyee
Stark, George R
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Keywords X-ray crystallography
Signal transduction
STAT
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Cell biology
Janus kinase
Biochemistry
Protein–protein interaction
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SecondaryResourceType review_article
Snippet Members of the STAT family of transcription factors are present in species as diverse as mammals, insects and slime molds. Discovered as mediators of...
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pubmed
elsevier
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StartPage 106
SubjectTerms Animals
Crystallography, X-Ray
DNA - metabolism
DNA-Binding Proteins - genetics
DNA-Binding Proteins - metabolism
Gene Expression
Humans
Janus kinase
Models, Molecular
Phosphorylation
Protein Binding - genetics
Protein–protein interaction
Signal transduction
Signal Transduction - genetics
STAT
STAT1 Transcription Factor
Trans-Activators - genetics
Trans-Activators - metabolism
Transcription
Transcription Factors - genetics
Transcription Factors - metabolism
Tyrosine - metabolism
X-ray crystallography
Title Association of STATs with relatives and friends
URI https://dx.doi.org/10.1016/S0962-8924(99)01709-2
https://www.ncbi.nlm.nih.gov/pubmed/10675904
https://search.proquest.com/docview/17505403
https://search.proquest.com/docview/70943894
Volume 10
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