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ATAD5 promotes replication restart by regulating RAD51 and PCNA in response to replication stress.

Authors :
Park, Su Hyung
Kang, Nalae
Song, Eunho
Wie, Minwoo
Lee, Eun A.
Hwang, Sunyoung
Lee, Deokjae
Ra, Jae Sun
Park, In Bae
Park, Jieun
Kang, Sukhyun
Park, Jun Hong
Hohng, Sungchul
Lee, Kyoo-young
Myung, Kyungjae
Source :
Nature Communications; 12/16/2019, Vol. 10 Issue 1, p1-15, 15p
Publication Year :
2019

Abstract

Maintaining stability of replication forks is important for genomic integrity. However, it is not clear how replisome proteins contribute to fork stability under replication stress. Here, we report that ATAD5, a PCNA unloader, plays multiple functions at stalled forks including promoting its restart. ATAD5 depletion increases genomic instability upon hydroxyurea treatment in cultured cells and mice. ATAD5 recruits RAD51 to stalled forks in an ATR kinase-dependent manner by hydroxyurea-enhanced protein-protein interactions and timely removes PCNA from stalled forks for RAD51 recruitment. Consistent with the role of RAD51 in fork regression, ATAD5 depletion inhibits slowdown of fork progression and native 5-bromo-2สน-deoxyuridine signal induced by hydroxyurea. Single-molecule FRET showed that PCNA itself acts as a mechanical barrier to fork regression. Consequently, DNA breaks required for fork restart are reduced by ATAD5 depletion. Collectively, our results suggest an important role of ATAD5 in maintaining genome integrity during replication stress. How the replisome machinery contributes to fork stability under replication stress is currently not clear. Here the authors reveal a role for ATAD5 in maintaining genome integrity during replication stress by promoting replication restart through RAD51/PCNA regulation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
10
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
140371733
Full Text :
https://doi.org/10.1038/s41467-019-13667-4