International Journal of Molecular Sciences (May 2023)

Nuclear DJ-1 Regulates DNA Damage Repair via the Regulation of PARP1 Activity

  • Zhong-Xuan Wang,
  • Yi Liu,
  • Yao-Lin Li,
  • Qiao Wei,
  • Rong-Rong Lin,
  • Ruiqing Kang,
  • Yang Ruan,
  • Zhi-Hao Lin,
  • Nai-Jia Xue,
  • Bao-Rong Zhang,
  • Jia-Li Pu

DOI
https://doi.org/10.3390/ijms24108651
Journal volume & issue
Vol. 24, no. 10
p. 8651

Abstract

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DNA damage and defective DNA repair are extensively linked to neurodegeneration in Parkinson’s disease (PD), but the underlying molecular mechanisms remain poorly understood. Here, we determined that the PD-associated protein DJ-1 plays an essential role in modulating DNA double-strand break (DSB) repair. Specifically, DJ-1 is a DNA damage response (DDR) protein that can be recruited to DNA damage sites, where it promotes DSB repair through both homologous recombination and nonhomologous end joining. Mechanistically, DJ-1 interacts directly with PARP1, a nuclear enzyme essential for genomic stability, and stimulates its enzymatic activity during DNA repair. Importantly, cells from PD patients with the DJ-1 mutation also have defective PARP1 activity and impaired repair of DSBs. In summary, our findings uncover a novel function of nuclear DJ-1 in DNA repair and genome stability maintenance, and suggest that defective DNA repair may contribute to the pathogenesis of PD linked to DJ-1 mutations.

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