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Proteome dynamics analysis identifies functional roles of SDE2 and hypoxia in DNA damage response in prostate cancer cells

机译:蛋白质组动力学分析鉴定了SDE2和缺氧在前列腺癌细胞中DNA损伤反应的功能作用

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摘要

Mechanistic understanding of hypoxia-responsive signaling pathways provides important insights into oxygen- and metabolism-dependent cellular phenotypes in diseases. Using SILAC-based quantitative proteomics, we provided a quantitative map identifying over 6300 protein groups in response to hypoxia in prostate cancer cells and identified both canonical and novel cellular networks dynamically regulated under hypoxia. Particularly, we identified SDE2, a DNA stress response modulator, that was significantly downregulated by hypoxia, independent of HIF (hypoxia-inducible factor) transcriptional activity. Mechanistically, hypoxia treatment promoted SDE2 polyubiquitination and degradation. Such regulation is independent of previously identified Arg/N-end rule proteolysis or the ubiquitin E3 ligase, CDT2. Depletion of SDE2 increased cellular sensitivity to DNA damage and inhibited cell proliferation. Interestingly, either SDE2 depletion or hypoxia treatment potentiated DNA damage-induced PCNA (proliferating cell nuclear antigen) monoubiquitination, a key step for translesion DNA synthesis. Furthermore, knockdown of SDE2 desensitized, while overexpression of SDE2 protected the hypoxia-mediated regulation of PCNA monoubiquitination upon DNA damage. Taken together, our quantitative proteomics and biochemical study revealed diverse hypoxia-responsive pathways that strongly associated with prostate cancer tumorigenesis and identified the functional roles of SDE2 and hypoxia in regulating DNA damage-induced PCNA monoubiquitination, suggesting a possible link between hypoxic microenvironment and the activation of error-prone DNA repair pathway in tumor cells.
机译:缺氧反应的信号传导途径的机械理解提供了重要的见解在疾病含氧和代谢依赖性细胞的表型。使用基于SILAC定量蛋白质组学,我们响应于缺氧在前列腺癌细胞中提供一个定量的地图识别超过6300蛋白质组,并确定这两个规范和新颖的蜂窝网络在缺氧条件下动态地调节。特别是,我们确定SDE2,一个DNA应激反应调节剂,这是显著缺氧下调,独立HIF(低氧诱导因子)的转录活性的。在机制上,缺氧处理促进SDE2泛素化和降解。这种调节是独立的先前识别的精氨酸/ N端法则蛋白水解或泛素E3连接酶,CDT2的。 SDE2的耗尽增加的细胞敏感性DNA损伤和抑制细胞增殖。有趣的是,无论是SDE2耗尽或缺氧治疗强化DNA损伤诱导的PCNA(增殖细胞核抗原)单泛素化,对于跨损伤DNA合成中的关键步骤。此外,SDE2击倒脱敏,而SDE2的过表达保护PCNA单泛素化的在DNA损伤的缺氧 - 介导的调节。总之,我们的定量蛋白质组学和生物化学研究表明,强烈与前列腺癌肿瘤发生有关,并确定在调控DNA损伤诱导的PCNA单泛素化SDE2的职能作用和缺氧多样的缺氧反应途径,提示缺氧微环境和激活之间可能存在的联系在肿瘤细胞容易出错的DNA修复途径。

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