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PINX1 缺失使多种癌症细胞易受 PARP 抑制的影响。

PINX1 loss confers susceptibility to PARP inhibition in pan-cancer cells.

机构信息

School of Life Science and Technology, ShanghaiTech University, Shanghai, China.

Shanghai Clinical Research and Trial Center, Shanghai, 201210, China.

出版信息

Cell Death Dis. 2024 Aug 22;15(8):610. doi: 10.1038/s41419-024-07009-6.

Abstract

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.

摘要

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。

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