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RNF168 cooperates with RNF8 to mediate FOXM1 ubiquitination and degradation in breast cancer epirubicin treatment

机译:RNF168与RNF8协同调节乳腺癌表阿霉素治疗中FOXm1泛素化和降解

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摘要

The forkhead box M1 (FOXM1) transcription factor has a central role in genotoxic agent response in breast cancer. FOXM1 is regulated at the post-translational level upon DNA damage, but the key mechanism involved remained enigmatic. RNF168 is a ubiquitination E3-ligase involved in DNA damage response. Western blot and gene promoter-reporter analyses showed that the expression level and transcriptional activity of FOXM1 reduced upon RNF168 overexpression and increased with RNF168 depletion by siRNA, suggesting that RNF168 negatively regulates FOXM1 expression. Co-immunoprecipitation studies in MCF-7 cells revealed that RNF168 interacted with FOXM1 and that upon epirubicin treatment FOXM1 downregulation was associated with an increase in RNF168 binding and conjugation to the protein degradation-associated K48-linked polyubiquitin chains. Consistently, RNF168 overexpression resulted in an increase in turnover of FOXM1 in MCF-7 cells treated with the protein synthesis inhibitor cycloheximide. Conversely, RNF168, knockdown significantly enhanced the half-life of FOXM1 in both absence and presence of epirubicin. Using a SUMOylation-defective FOXM1-5x(K>R) mutant, we demonstrated that SUMOylation is required for the recruitment of RNF168 to mediate FOXM1 degradation. In addition, clonogenic assays also showed that RNF168 mediates epirubicin action through targeting FOXM1, as RNF168 could synergise with epirubicin to repress clonal formation in wild-type but not in FOXM1-deficient mouse embryo fibroblasts (MEFs). The physiological relevance of RNF168-mediated FOXM1 repression is further emphasized by the significant inverse correlation between FOXM1 and RNF168 expression in breast cancer patient samples. Moreover, we also obtained evidence that RNF8 recruits RNF168 to FOXM1 upon epirubicin treatment and cooperates with RNF168 to catalyse FOXM1 ubiquitination and degradation. Collectively, these data suggest that RNF168 cooperates with RNF8 to mediate the ubiquitination and degradation of SUMOylated FOXM1 in breast cancer genotoxic response.
机译:叉头盒M1(FOXM1)转录因子在乳腺癌的遗传毒性剂反应中具有重要作用。 FOXM1在DNA受损时在翻译后水平受到调控,但是所涉及的关键机制仍然是个谜。 RNF168是涉及DNA损伤反应的泛素化E3连接酶。蛋白质印迹和基因启动子报告者分析表明,FOXM1的表达水平和转录活性在RNF168过表达时降低,并随着siRNA的耗竭而增加,这表明RNF168负调控FOXM1的表达。在MCF-7细胞中进行的免疫共沉淀研究表明,RNF168与FOXM1相互作用,并且经表柔比星处理后,FOXM1的下调与RNF168结合和与蛋白质降解相关的K48连接的多聚泛素链的结合增加有关。一致地,RNF168的过表达导致用蛋白质合成抑制剂环己酰亚胺处理的MCF-7细胞中FOXM1的转换增加。相反,在不存在和存在表柔比星的情况下,RNF168的敲低显着提高了FOXM1的半衰期。使用SUMOylation缺陷FOXM1-5x(K> R)突变体,我们证明SUMOylation是RNF168募集以调解FOXM1降解所必需的。此外,克隆形成试验还表明,RNF168通过靶向FOXM1介导表柔比星作用,因为RNF168可以与表柔比星协同作用,以抑制野生型的克隆形成,而不能抑制FOXM1缺陷的小鼠胚胎成纤维细胞(MEF)。乳腺癌患者样品中FOXM1与RNF168表达之间的显着反相关进一步强调了RNF168介导的FOXM1抑制的生理相关性。此外,我们还获得了RNF8在表柔比星治疗后将RNF168募集到FOXM1的证据,并与RNF168协同催化FOXM1的泛素化和降解。总体而言,这些数据表明,RNF168与RNF8协同调节SUMOylated FOXM1在乳腺癌的遗传毒性反应中的泛素化和降解。

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