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USP14 的失活扰乱泛素稳态并延迟小鼠胚胎成纤维细胞和果蝇中的细胞周期。

Inactivation of USP14 Perturbs Ubiquitin Homeostasis and Delays the Cell Cycle in Mouse Embryonic Fibroblasts and in Fruit Fly Drosophila.

作者信息

Lee Jung Hoon, Park Seoyoung, Yun Yejin, Choi Won Hoon, Kang Min-Ji, Lee Min Jae

机构信息

Department of Biochemistry and Molecular Biology, Seoul National University College of Medicine, Seoul, Republic of Korea.

Neuroscience Research Institute, Seoul National University College of Medicine, Seoul, Republic of Korea.

出版信息

Cell Physiol Biochem. 2018;47(1):67-82. doi: 10.1159/000489750. Epub 2018 May 9.

Abstract

BACKGROUND/AIMS: The 26S proteasome is the key proteolytic complex for recognition and degradation of polyubiquitinated target substrates in eukaryotes. Among numerous proteasome-associated proteins, a deubiquitinating enzyme (DUB) USP14 has been identified as an endogenous inhibitor of the proteasome. Here, we explored the complex regulatory functions of USP14 that involve ubiquitin (Ub) homeostasis and substrate degradation in flies and mammals.

METHODS

USP14-null primary and immortalized mouse embryonic fibroblasts (MEFs) and USP14 knocked-down Drosophila were analyzed in this study. We measured proteasome and DUB activities using fluorogenic reporter substrates and adduct-forming probes. To examine the levels of ubiquitin, we performed immunoblotting and immunohistochemistry. Mass spectrometry (MS) was used to examine polyUb chain linkages and USP14-interacing proteins. Cell cycle was analyzed by flow cytometry, BrdU labeling, and phospho-histone H3 staining.

RESULTS

The homeostasis of Ub in USP14-/-MEFs was markedly perturbed because of facilitated clearance of Ub. This phenomenon was recapitulated in muscles of USP14-deficient Drosophila with old ages. Absolute quantitation using MS also revealed that USP14-/- MEFs contained significantly increased amounts of Ub, compared with wild-type. The key phenotype of USP14-/- MEFs was their delayed proliferation originated from prolonged interphase possibly through aberrant degradation of cyclins A and B1. We found that knocking down USP14 in Drosophila resulted in delayed eye development associated with reduced mitotic activity.

CONCLUSION

Our study identifies novel cellular functions of USP14 not only in cellular Ub hometostasis but also in cell cycle progression. USP14 was also essential for proper Drosophila eye development. These results strongly suggest that the USP14-mediated proteasome activity regulation may be directly related to various human diseases including cancer.

摘要

背景/目的:26S蛋白酶体是真核生物中识别和降解多聚泛素化靶底物的关键蛋白水解复合物。在众多与蛋白酶体相关的蛋白质中,去泛素化酶(DUB)USP14已被鉴定为蛋白酶体的内源性抑制剂。在此,我们探讨了USP14在果蝇和哺乳动物中涉及泛素(Ub)稳态和底物降解的复杂调节功能。

方法

本研究分析了USP14基因敲除的原代和永生化小鼠胚胎成纤维细胞(MEF)以及USP14基因敲低的果蝇。我们使用荧光报告底物和加合物形成探针测量蛋白酶体和DUB活性。为了检测泛素水平,我们进行了免疫印迹和免疫组织化学。质谱(MS)用于检测多聚泛素链连接和USP14相互作用蛋白。通过流式细胞术、BrdU标记和磷酸化组蛋白H3染色分析细胞周期。

结果

由于Ub清除加速,USP14基因敲除的MEF中Ub的稳态受到明显干扰。这种现象在老年USP14缺陷果蝇的肌肉中也有体现。使用MS进行的绝对定量还显示,与野生型相比,USP14基因敲除的MEF中Ub的含量显著增加。USP14基因敲除的MEF的关键表型是其增殖延迟,这可能是由于细胞周期蛋白A和B1的异常降解导致间期延长所致。我们发现,在果蝇中敲低USP14会导致眼睛发育延迟,并伴有有丝分裂活性降低。

结论

我们的研究确定了USP14不仅在细胞Ub稳态中,而且在细胞周期进程中具有新的细胞功能。USP14对果蝇眼睛的正常发育也至关重要。这些结果强烈表明,USP14介导的蛋白酶体活性调节可能与包括癌症在内的各种人类疾病直接相关。

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