SPIN1 facilitates chemoresistance and HR repair by promoting Tip60 binding to H3K9me3

Author:

Wang Yukun,Li Mengyao,Chen Yuhan,Jiang Yuhan,Zhang Ziyu,Yan ZhenzhenORCID,Liu XiuhuaORCID,Wu ChenORCID

Abstract

AbstractThe tandem Tudor-like domain-containing protein Spindlin1 (SPIN1) is a transcriptional coactivator with critical functions in embryonic development and emerging roles in cancer. However, the involvement of SPIN1 in DNA damage repair has remained unclear. Our study shows that SPIN1 is recruited to DNA lesions through its N-terminal disordered region that binds to Poly-ADP-ribose (PAR), and facilitates homologous recombination (HR)-mediated DNA damage repair. SPIN1 promotes H3K9me3 accumulation at DNA damage sites and enhances the interaction between H3K9me3 and Tip60, thereby promoting the activation of ATM and HR repair. We also show that SPIN1 increases chemoresistance. These findings reveal a novel role for SPIN1 in the activation of H3K9me3-dependent DNA repair pathways, and suggest that SPIN1 may contribute to cancer chemoresistance by modulating the efficiency of double-strand break (DSB) repair.

Funder

MOST | National Natural Science Foundation of China

河 北 省 科 学 技 术 厅 | Natural Science Foundation of Hebei Province

Science and Technology Program of Hebei

Interdisciplinary Research Program of Natural Science of Hebei University

Publisher

Springer Science and Business Media LLC

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