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◆ Nucleic acids research2026-08-10

CHK2 regulates MUS81-dependent DSBs in response to replication stress and BRCA2 deficiency.

Eva Malacaria, Carolina Figlioli, Anita Palma, Masayoshi Honda, Pasquale Valenzisi, Marialuisa Casella, Serena Camerini, Fabio Pucci, Sara Rinalducci, Maurizio Semproni, Maria Spies, Annapaola Franchitto, Pietro Pichierri

原始摘要(英文原文)· Original abstract
MUS81 is a structure-specific endonuclease that processes DNA intermediates during mitosis and in S-phase following replication stress. It plays a crucial role in cleaving deprotected reversed forks in BRCA2-deficient cells. However, how MUS81 is regulated during replication stress in human cells remains unknown. Our study reveals that CHK2 binds to the MUS8-EME2 complex in S-phase through the FHA domain and positively regulates the formation of DSBs in response to persistent or pathological replication stress. Mechanistically, our cellular and biochemical data identify a dual-site phosphorylation regulatory mechanism involving priming at the CDK2 site S95 followed by CHK2-dependent modification of the activatory site S97. Phosphorylation of MUS81 does not affect recruitment to the stalled forks but is crucial for the replication stress-dependent association with SLX4 in S-phase. At deprotected forks, in BRCA2-depleted cells, the CHK2-MUS81 complex assembles downstream of fork reversal and degradation, and CHK2-dependent phosphorylation is essential for replication fork recovery and viability. Together, our findings elucidate a novel regulatory mechanism of the MUS81 complex in S-phase and reveal a previously unrecognized role of the ATM-CHK2 axis in responding to persistent replication fork arrest or fork deprotection in the absence of BRCA2.
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CHK2 regulates MUS81-dependent DSBs in response to replication stress and BRCA2 deficiency. — 科研速览 Science Skim