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The deubiquitinating enzyme USP4 regulates BRCA1 stability and function.

Xueyuan Guo | Yanfang Ma | Ting Zhang | Runyu Liu | Fen Chang | Xingyue Yan | Tianyun Yu | Pengfei Wu | Qin Li | Luzheng Xu | Junyi Duan | Li Li | Yanrong Su | Genze Shao
NPJ breast cancer | 2024

BRCA1 plays a suppressive role in breast tumorigenesis. Ubiquitin-dependent degradation is a common mechanism that regulates BRCA1 protein stability, and several ubiquitin ligases involved have been identified. However, the deubiquitinating enzyme for BRCA1 remains less defined. Here, we report that the deubiquitinase USP4 interacts with, deubiquitinates and stabilizes BRCA1, maintaining the protein level of BRCA1. USP4 knockdown results in a decreased BRCA1 protein level, impairment in homologous recombination mediated double-stranded break repair, and increased genome instability, and confers resistance to DNA damage-inducing agents and PARP inhibitors. Ectopic expression of USP4 stabilizes BRCA1 and reverse the effects caused by USP4 knockdown. Moreover, USP4 is low expressed in human breast cancer tissues and its low expression correlates with poorer survival of patients. Furthermore, we identified several loss-of-function mutations of USP4 in human gynecological cancers, the catalytic activity of which or their interaction with BRCA1 is disrupted. Together, we reveal that USP4 is a deubiquitinase for BRCA1. USP4 positively regulates the stability and function of BRCA1 through de-ubiquitination, and plays important role in the suppression of breast cancer.

Pubmed ID: 38734703

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: National Natural Science Foundation of China (National Science Foundation of China),
    Id: 82172924
  • Agency: National Natural Science Foundation of China (National Science Foundation of China),
    Id: 81972477
  • Agency: National Natural Science Foundation of China (National Science Foundation of China),
    Id: 81772953
  • Agency: National Science Foundation of China | Major Research Plan,
    Id: 2017YFA0503900

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