Mechanism of SETX-BRCA1-BARD1 complex in resolution of R-loops and transcription-replication conflicts

Author:

Sung Patrick1ORCID,Dutta Arijit2,Ji Jae-Hoon2,Fang Qingming1,Zhou Shuo2,Liang Fengshan3,Nyalwidhe Julius4,Dray Eloise5ORCID,Verway-Cohen Amy6ORCID,McDonald Drew6ORCID,Avalos Bárbara de la Peña5ORCID,Li Wenjing1,Herrero Ane3,Fitzgerald O’Taveon1,Taylor Alexander1ORCID,Kwon Youngho7ORCID,Semmes Oliver4,Tsai Miaw-Sheue6,Hromas Robert1,Burma Sandeep8ORCID,Bishop Alexander9ORCID,Mazin Alexander10,Wasmuth Elizabeth5,Olsen Shaun11ORCID,Zhou Daohong5,Zhao Weixing1ORCID,Kupfer Gary12ORCID

Affiliation:

1. University of Texas Health Science Center at San Antonio

2. The University of Texas Health San Antonio

3. Yale University School of Medicine

4. Eastern Virginia Medical School

5. University of Texas Health San Antonio

6. Lawrence Berkeley National Laboratory

7. UT Health San Antonio

8. The University of Texas Health Science Center at San Antonio

9. University of Texas Health at San Antonio

10. Yale University

11. University of Texas Health Science Center San Antonio

12. Georgetown University

Abstract

Abstract Senataxin (SETX), a putative RNA-DNA helicase, is recruited to transcription pause sites via the tumor suppressor BRCA1. Here, we define the mechanism by which SETX-BRCA1 resolves transcription-associated R-loops to prevent deleterious outcomes. Specifically, we show that SETX unwinds R-loops, and that the complex of BRCA1 and its obligatory partner BARD1 binds R-loops and stimulates R-loop unwinding by SETX. Importantly, BRCA1-BARD1 alleviates the inhibitory effect of RAD52 on SETX-mediated R-loop unwinding. We also demonstrate that phosphorylation of Ser642 in SETX promotes its interaction with BRCA1 via the tandem BRCT domain of the latter. Accordingly, mutations in the catalytic domain or Ser642 in SETX lead to R-loop accumulation, transcription-replication conflicts, replication fork stalling, and DNA double strand breaks in human cells. Our results thus establish the molecular basis for functional synergy between SETX and BRCA1-BARD1 in R-loop resolution and the mitigation of transcription-replication conflicts to preserve genome integrity.

Publisher

Research Square Platform LLC

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