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The Deubiquitinating Enzyme USP17 Is Highly Expressed in Tumor Biopsies, Is Cell Cycle Regulated, and Is Required for G1-S Progression

机译:去泛素化酶USP17在肿瘤活检组织中高度表达,受细胞周期调节,是G1-S进展所需的

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摘要

Ubiquitination is a reversible posttranslational modification that is essential for cell cycle control, and it is becoming increasingly clear that the removal of ubiquitin from proteins by deubiquitinating enzymes (DUB) is equally important. In this study, we have identified high levels of the DUB USP17 in several tumor-derived cell lines and primary lung, colon, esophagus, and cervix tumor biopsies. We also report that USP17 is tightly regulated during the cell cycle in all the cells examined, being abundantly evident in G1 and absent in S phase. Moreover, regulated USP17 expression was necessary for cell cycle progression because its depletion significantly impaired G1-S transition and blocked cell proliferation. Previously, we have shown that USP17 regulates the intracellular translocation and activation of the GTPase Ras by controlling Ras-converting enzyme 1 (RCE1) activation. RCE1 also regulates the processing of other proteins with a CAAX motif, including Rho family GTPases. We now show that USP17 depletion blocks Ras and RhoA localization and activation. Moreover, our results confirm that USP17-depleted cells have constitutively elevated levels of the cyclin-dependent kinase inhibitors p21cip1 and p27kip1, known downstream targets of Ras and RhoA signaling. These observations clearly show that USP17 is tightly regulated during cell division and that its expression is necessary to coordinate cell cycle progression, and thus, it may be considered a promising novel cancer therapeutic target. Cancer Res; 70(8); 3329–39. ©2010 AACR.
机译:泛素化是可逆的翻译后修饰,对细胞周期控制至关重要,而且越来越清楚的是,通过去泛素化酶(DUB)从蛋白质中去除泛素同样重要。在这项研究中,我们在几种肿瘤来源的细胞系以及原发性肺,结肠,食道和宫颈肿瘤活检物中鉴定出了高水平的DUB USP17。我们还报告说,USP17在所有检查的细胞周期中均受到严格调节,在G1中明显存在,而在S期则不存在。而且,调节的USP17表达对于细胞周期进程是必要的,因为它的耗竭显着损害了G1-S的转化并阻止了细胞的增殖。以前,我们已经证明USP17通过控制Ras转换酶1(RCE1)激活来调节GTPase Ras的细胞内移位和激活。 RCE1还调节具有CAAX主题的其他蛋白质的加工,包括Rho家族GTPases。现在我们显示,USP17耗尽会阻止Ras和RhoA的本地化和激活。此外,我们的结果证实,USP17耗尽的细胞具有周期升高的细胞周期蛋白依赖性激酶抑制剂p21cip1和p27kip1的水平,这是Ras和RhoA信号的下游靶标。这些观察清楚地表明,USP17在细胞分裂期间受到严格调节,并且其表达对于协调细胞周期进程是必需的,因此,它可以被认为是有希望的新型癌症治疗靶标。癌症研究; 70(8); 3329–39。 ©2010 AACR。

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