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OTUB2 Promotes Homologous Recombination Repair Through Stimulating Rad51 Expression in Endometrial Cancer

机译:Otub2通过刺激子宫内膜癌中的rad51表达来促进同源重组修复

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摘要

Genetic instability, raised from dysregulation of DNA repair, is involved in tumor development. OTUB2 (ovarian tumor domain protease domain-containing ubiquitin aldehyde-binding protein 2), which is responsible for DNA double-strand break (DSB), is implicated in carcinogenesis of various tumors. The effect of OTUB2 on endometrial cancer progression was then investigated. First, OTUB2 was found to be upregulated in endometrial cancer tissues and cell lines, and was closely associated with overall survival of endometrial cancer patients. Cell Counting Kit-8 and flow cytometry assay results revealed that overexpression of OTUB2 enhanced cell viability of endometrial cancer cells, while knockdown of OTUB2 inhibited cell viability. Moreover, as demonstrated by promoting cell viability and suppression of cell apoptosis, cisplatin-induced cell damage was reversed by OTUB2. Mechanistically, OTUB2 could activate Yes-associated protein/transcriptional co-activator with PDZ-binding motif (TAZ) to promote homologous recombination repair via depletion of γH2AX (phosphorylation of histone H2AX) and accumulation of Rad51. In vivo xenograft model also showed that silence of OTUB2 suppressed the growth of endometrial cancer and increased tumor sensitivity to antitumor drugs. In conclusion, OTUB2 promoted homologous recombination repair in endometrial cancer via YAP/TAZ-mediated Rad51 expression, providing a potential therapeutic target for endometrial cancer.
机译:从DNA修复的失调中提出的遗传不稳定,参与肿瘤发育。 OTUB2(卵巢肿瘤域蛋白酶域蛋白质醛脂蛋白结合蛋白2),其负责DNA双链断裂(DSB),涉及各种肿瘤的致癌作用。然后研究了OTUB2对子宫内膜癌进展的影响。首先,发现Otub2在子宫内膜癌组织和细胞系中上调,并且与子宫内膜癌患者的整体存活密切相关。细胞计数试剂盒-8和流式细胞术测定结果表明,OTUB2的过度表达增强子宫内膜癌细胞的细胞活力,而OTUB2的敲低抑制细胞活力。此外,通过通过促进细胞活力和细胞凋亡的抑制来证明,通过Otub2反转顺铂诱导的细胞损伤。机械地,Otub2可以用PDZ结合基序(TAZ)激活是相关的蛋白/转录共激活剂,以通过释耗γH2(组蛋白H2AX的磷酸化)和RAD51的积累来促进同源重组修复。在体内异种移植模型中也表明,OTUB2的沉默抑制了子宫内膜癌的生长,并增加了对抗肿瘤药物的肿瘤敏感性。总之,Otub2通过YAP / TAZ介导的RAD51表达促进了子宫内膜癌的同源重组修复,为子宫内膜癌提供了潜在的治疗靶标。

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