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SHLD2/FAM35A co‐operates with REV7 to coordinate DNA double‐strand break repair pathway choice

Authors :
Yan Coulombe
Morag Park
Celia M. T. Greenwood
Koren K. Mann
Alexandre Orthwein
Zhigang Li
Jean-Yves Masson
Estelle Simo-Cheyou
Théo Morin
Jean-François Côté
Elise G Lavoie
Yuval Tabach
Steven Findlay
Martin Karam
Vincent M Luo
Damien Grapton
Christian Dove
Billel Djerir
Husam Khaled
Hellen Kuasne
Halil Bagci
Abba Malina
Arash Samiei
Alexandre Maréchal
Kathleen Oros Klein
Dolev Rahat
John E. Heath
Source :
The EMBO Journal
Publication Year :
2018
Publisher :
John Wiley and Sons Inc., 2018.

Abstract

DNA double‐strand breaks (DSBs) can be repaired by two major pathways: non‐homologous end‐joining (NHEJ) and homologous recombination (HR). DNA repair pathway choice is governed by the opposing activities of 53BP1, in complex with its effectors RIF1 and REV7, and BRCA1. However, it remains unknown how the 53BP1/RIF1/REV7 complex stimulates NHEJ and restricts HR to the S/G2 phases of the cell cycle. Using a mass spectrometry (MS)‐based approach, we identify 11 high‐confidence REV7 interactors and elucidate the role of SHLD2 (previously annotated as FAM35A and RINN2) as an effector of REV7 in the NHEJ pathway. FAM35A depletion impairs NHEJ‐mediated DNA repair and compromises antibody diversification by class switch recombination (CSR) in B cells. FAM35A accumulates at DSBs in a 53BP1‐, RIF1‐, and REV7‐dependent manner and antagonizes HR by limiting DNA end resection. In fact, FAM35A is part of a larger complex composed of REV7 and SHLD1 (previously annotated as C20orf196 and RINN3), which promotes NHEJ and limits HR. Together, these results establish SHLD2 as a novel effector of REV7 in controlling the decision‐making process during DSB repair.

Details

Language :
English
ISSN :
14602075 and 02614189
Volume :
37
Issue :
18
Database :
OpenAIRE
Journal :
The EMBO Journal
Accession number :
edsair.doi.dedup.....f62dd9d602ec577d1292b1d849919e6a