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PMID: 22084686 Published · ppublish English

Phosphorylation: the molecular switch of double-strand break repair.

International journal of proteomics ·Vol. 2011 ·2011-11-23

Summers K C, Shen F, Sierra Potchanant E A, Phipps E A, Hickey R J, Malkas L H

Abstract

Repair of double-stranded breaks (DSBs) is vital to maintaining genomic stability. In mammalian cells, DSBs are resolved in one of the following complex repair pathways: nonhomologous end-joining (NHEJ), homologous recombination (HR), or the inclusive DNA damage response (DDR). These repair pathways rely on factors that utilize reversible phosphorylation of proteins as molecular switches to regulate DNA repair. Many of these molecular switches overlap and play key roles in multiple pathways. For example, the NHEJ pathway and the DDR both utilize DNA-PK phosphorylation, whereas the HR pathway mediates repair with phosphorylation of RPA2, BRCA1, and BRCA2. Also, the DDR pathway utilizes the kinases ATM and ATR, as well as the phosphorylation of H2AX and MDC1. Together, these molecular switches regulate repair of DSBs by aiding in DSB recognition, pathway initiation, recruitment of repair factors, and the maintenance of repair mechanisms.

Article Info
Journal
International journal of proteomics
Abbr.
Int J Proteomics
ISSN
2090-2174
Published
2011-11-23
Indexed
2011-11-15
Updated
2011-11-15
Language
English
Country/Region
Egypt
NLM ID
101538205
External Links
PubMed source
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