Samsa William E, Zhang Zhen, Gong Zihua
Department of Cancer Biology, Cleveland Clinic Lerner Research Institute, Cleveland, Ohio, USA.
J Cell Physiol. 2025 Jan;240(1):e31503. doi: 10.1002/jcp.31503. Epub 2024 Dec 18.
RUNX3 is a master developmental transcriptional factor that has been implicated as a tumor suppressor in many cancers. However, the exact role of RUNX3 in cancer pathogenesis remains to be completely elucidated. Recently, it has emerged that RUNX3 is involved in the DNA damage response. Here, we demonstrate that heterodimerization of RUNX3 with CBFβ is necessary for its stability by protecting RUNX3 from RUNX3 ADP-ribosylation-dependent ubiquitination and degradation. We further identify new amino acid residues that are targets for PARylation and demonstrate that RUNX3 PARylation at these residues is necessary for localization of RUNX3 to DNA double strand break sites (DBSs). We also demonstrate that both RUNX3 PARylation and CBFβ heterodimerization with RUNX3 positively regulates homologous recombination (HR) repair, in part by promoting the recruitment of CtIP and phospho-RPA2 to the DBSs to mediate HR repair. In summary, we provide evidence that RUNX3 regulates HR repair activity in a PARylation-dependent manner.
RUNX3是一种主要的发育转录因子,在许多癌症中被认为是一种肿瘤抑制因子。然而,RUNX3在癌症发病机制中的确切作用仍有待完全阐明。最近发现,RUNX3参与DNA损伤反应。在此,我们证明RUNX3与CBFβ的异二聚化对于其稳定性是必要的,它通过保护RUNX3免受RUNX3 ADP核糖基化依赖性泛素化和降解。我们进一步鉴定了新的作为PAR化靶点的氨基酸残基,并证明RUNX3在这些残基处的PAR化对于RUNX3定位到DNA双链断裂位点(DBS)是必要的。我们还证明,RUNX3的PAR化以及CBFβ与RUNX3的异二聚化均正向调节同源重组(HR)修复,部分是通过促进CtIP和磷酸化RPA2募集到DBS以介导HR修复。总之,我们提供的证据表明RUNX3以PAR化依赖性方式调节HR修复活性。