School of Life Science and Technology, ShanghaiTech University, Shanghai, China.
Shanghai Clinical Research and Trial Center, Shanghai, 201210, China.
Cell Death Dis. 2024 Aug 22;15(8):610. doi: 10.1038/s41419-024-07009-6.
PARP1 is crucial in DNA damage repair, chromatin remodeling, and transcriptional regulation. The principle of synthetic lethality has effectively guided the application of PARP inhibitors in treating tumors carrying BRCA1/2 mutations. Meanwhile, PARP inhibitors have exhibited efficacy in BRCA-proficient patients, further highlighting the necessity for a deeper understanding of PARP1 function and its inhibition in cancer therapy. Here, we unveil PIN2/TRF1-interacting telomerase inhibitor 1 (PINX1) as an uncharacterized PARP1-interacting protein that synergizes with PARP inhibitors upon its depletion across various cancer cell lines. Loss of PINX1 compromises DNA damage repair capacity upon etoposide treatment. The vulnerability of PINX1-deficient cells to etoposide and PARP inhibitors could be effectively restored by introducing either a full-length or a mutant form of PINX1 lacking telomerase inhibitory activity. Mechanistically, PINX1 is recruited to DNA lesions through binding to the ZnF3-BRCT domain of PARP1, facilitating the downstream recruitment of the DNA repair factor XRCC1. In the absence of DNA damage, PINX1 constitutively binds to PARP1, promoting PARP1-chromatin association and transcription of specific DNA damage repair proteins, including XRCC1, and transcriptional regulators, including GLIS3. Collectively, our findings identify PINX1 as a multifaceted partner of PARP1, crucial for safeguarding cells against genotoxic stress and emerging as a potential candidate for targeted tumor therapy.
PARP1 在 DNA 损伤修复、染色质重塑和转录调控中起着至关重要的作用。合成致死原理有效地指导了 PARP 抑制剂在治疗携带 BRCA1/2 突变的肿瘤中的应用。同时,PARP 抑制剂在 BRCA 功能正常的患者中也表现出了疗效,这进一步强调了深入了解 PARP1 功能及其在癌症治疗中的抑制作用的必要性。在这里,我们揭示了 PIN2/TRF1 相互作用的端粒酶抑制剂 1(PINX1)作为一种尚未被描述的 PARP1 相互作用蛋白,在各种癌细胞系中耗尽时,与 PARP 抑制剂协同作用。PINX1 的缺失会损害依托泊苷处理后的 DNA 损伤修复能力。通过引入全长或缺乏端粒酶抑制活性的突变形式的 PINX1,可有效恢复 PINX1 缺陷细胞对依托泊苷和 PARP 抑制剂的敏感性。从机制上讲,PINX1 通过与 PARP1 的 ZnF3-BRCT 结构域结合而被招募到 DNA 损伤部位,促进 DNA 修复因子 XRCC1 的下游募集。在没有 DNA 损伤的情况下,PINX1 会与 PARP1 持续结合,促进 PARP1-染色质的结合以及特定 DNA 损伤修复蛋白(包括 XRCC1)和转录调节因子(包括 GLIS3)的转录。总的来说,我们的研究结果确定了 PINX1 是 PARP1 的一个多方面的伴侣,对保护细胞免受遗传毒性应激至关重要,并成为靶向肿瘤治疗的潜在候选药物。