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PMID: 14555996 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Crystal structure of IRF-3 reveals mechanism of autoinhibition and virus-induced phosphoactivation.

Nature structural biology ·Vol. 10 ·No. 11 ·2003-11-00 ·Pages 913-21

Qin BY, Liu C, Lam SS, Srinath H, Delston R, Correia JJ, Derynck R, Lin K

Abstract

IRF-3, a member of the interferon regulatory factor (IRF) family of transcription factors, functions as a molecular switch for antiviral activity. IRF-3 uses an autoinhibitory mechanism to suppress its transactivation potential in uninfected cells, and virus infection induces phosphorylation and activation of IRF-3 to initiate the antiviral responses. The crystal structure of the IRF-3 transactivation domain reveals a unique autoinhibitory mechanism, whereby the IRF association domain and the flanking autoinhibitory elements condense to form a hydrophobic core. The structure suggests that phosphorylation reorganizes the autoinhibitory elements, leading to unmasking of a hydrophobic active site and realignment of the DNA binding domain for transcriptional activation. IRF-3 exhibits marked structural and surface electrostatic potential similarity to the MH2 domain of the Smad protein family and the FHA domain, suggesting a common molecular mechanism of action among this superfamily of signaling mediators.

MeSH Terms
Amino Acid Sequence Crystallography, X-Ray DNA-Binding Proteins/chemistry,metabolism Humans Interferon Regulatory Factor-3 Molecular Sequence Data Phosphorylation Protein Kinases/metabolism Protein Structure, Tertiary Sequence Alignment Static Electricity Transcription Factors/chemistry,metabolism
Chemicals
DNA-Binding Proteins IRF3 protein, human Interferon Regulatory Factor-3 Transcription Factors Protein Kinases
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Qin Bin Y
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester 01605, USA.
Liu Cheng
Lam Suvana S
Srinath Hema
Delston Rachel
Correia John J
Derynck Rik
Lin Kai
Article Info
Journal
Nature structural biology
Abbr.
Nat Struct Biol
ISSN
1072-8368
Published
2003-11-00
Epub
2003-00-12
Pages
913-21
Language
English
Region
United States
NLM ID
9421566
Subset
IM
Databases
PDB
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