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PMID: 22369660 Published · epublish English

BRCA1 tumor suppressor network: focusing on its tail.

Cell & bioscience ·Vol. 2 ·No. 1 ·2012-10-02

Wang Bin

Abstract

Germline mutations of the BRCA1 tumor suppressor gene are a major cause of familial breast and ovarian cancer. BRCA1 plays critical roles in the DNA damage response that regulates activities of multiple repair and checkpoint pathways for maintaining genome stability. The BRCT domains of BRCA1 constitute a phospho-peptide binding domain recognizing a phospho-SPxF motif (S, serine; P, proline; × varies; F, phenylalanine). The BRCT domains are frequently targeted by clinically important mutations and most of these mutations disrupt the binding surface of the BRCT domains to phosphorylated peptides. The BRCT domain and its capability to bind phosphorylated protein is required for the tumor suppressor function of BRCA1. Through its BRCT phospho-binding ability BRCA1 forms at least three mutually exclusive complexes by binding to phosphorylated proteins Abraxas, Bach1 and CTIP. The A, B and C complexes, at lease partially undertake BRCA1's role in mechanisms of cell cycle checkpoint and DNA repair that maintain genome stability, thus may play important roles in BRCA1's tumor suppressor function.

Article Info
Journal
Cell & bioscience
Abbr.
Cell Biosci
Published
2012-10-02
Indexed
2012-04-02
Updated
2016-10-25
Language
English
Country/Region
England
NLM ID
101561195
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