Inactivation of VRK1 sensitizes ovarian cancer to PARP inhibition through regulating DNA-PK stability

生物 癌症研究 卵巢癌 聚ADP核糖聚合酶 细胞生物学 癌症 DNA 遗传学 聚合酶
作者
Do Yeon Kim,Hyeseon Yun,Jieun You,Ji-U Lee,Dong‐Hee Kang,Yea Seong Ryu,Dong‐In Koh,Dong‐Hoon Jin
出处
期刊:Experimental Cell Research [Elsevier BV]
卷期号:438 (1): 114036-114036
标识
DOI:10.1016/j.yexcr.2024.114036
摘要

Ovarian cancer is the leading cause of gynecologic cancer death. Among the most innovative anti-cancer approaches, the genetic concept of synthetic lethality is that mutations in multiple genes work synergistically to effect cell death. Previous studies found that although vaccinia-related kinase-1 (VRK1) associates with DNA damage repair proteins, its underlying mechanisms remain unclear. Here, we found high VRK1 expression in ovarian tumors, and that VRK1 depletion can significantly promote apoptosis and cell cycle arrest. The effect of VRK1 knockdown on apoptosis was manifested by increased DNA damage, genomic instability, and apoptosis, and also blocked nonhomologous end-joining (NHEJ) by destabilizing DNA-PK. Further, we verified that VRK1 depletion enhanced sensitivity to a PARP inhibitor (PARPi), olaparib, promoting apoptosis through DNA damage, especially in ovarian cancer cell lines with high VRK1 expression. Proteins implicated in DNA damage responses are suitable targets for the development of new anti-cancer therapeutic strategies, and their combination could represent an alternative form of synthetic lethality. Therefore, normal protective DNA damage responses are impaired by combining olaparib with elimination of VRK1 and could be used to reduce drug dose and its associated toxicity. In summary, VRK1 represents both a potential biomarker for PARPi sensitivity, and a new DDR-associated therapeutic target, in ovarian cancer.
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