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TRAP1通过调控CDK1和MAD2的表达/泛素化来控制细胞周期的G2-M期转换。

TRAP1 controls cell cycle G2-M transition through the regulation of CDK1 and MAD2 expression/ubiquitination.

作者信息

Sisinni Lorenza, Maddalena Francesca, Condelli Valentina, Pannone Giuseppe, Simeon Vittorio, Li Bergolis Valeria, Lopes Elvira, Piscazzi Annamaria, Matassa Danilo Swann, Mazzoccoli Carmela, Nozza Filomena, Lettini Giacomo, Amoroso Maria Rosaria, Bufo Pantaleo, Esposito Franca, Landriscina Matteo

机构信息

Laboratory of Pre-clinical and Translational Research, IRCCS, Referral Cancer Center of Basilicata, Rionero in Vulture, Italy.

Anatomic Pathology Unit, Department of Clinic and Experimental Medicine, University of Foggia, Italy.

出版信息

J Pathol. 2017 Sep;243(1):123-134. doi: 10.1002/path.4936. Epub 2017 Aug 9.

Abstract

Regulation of tumour cell proliferation by molecular chaperones is still a complex issue. Here, the role of the HSP90 molecular chaperone TRAP1 in cell cycle regulation was investigated in a wide range of human breast, colorectal, and lung carcinoma cell lines, and tumour specimens. TRAP1 modulates the expression and/or the ubiquitination of key cell cycle regulators through a dual mechanism: (i) transcriptional regulation of CDK1, CYCLIN B1, and MAD2, as suggested by gene expression profiling of TRAP1-silenced breast carcinoma cells; and (ii) post-transcriptional quality control of CDK1 and MAD2, being the ubiquitination of these two proteins enhanced upon TRAP1 down-regulation. Mechanistically, TRAP1 quality control on CDK1 is crucial for its regulation of mitotic entry, since TRAP1 interacts with CDK1 and prevents CDK1 ubiquitination in cooperation with the proteasome regulatory particle TBP7, this representing the limiting factor in TRAP1 regulation of the G2-M transition. Indeed, TRAP1 silencing results in enhanced CDK1 ubiquitination, lack of nuclear translocation of CDK1/cyclin B1 complex, and increased MAD2 degradation, whereas CDK1 forced up-regulation partially rescues low cyclin B1 and MAD2 levels and G2-M transit in a TRAP1-poor background. Consistently, the CDK1 inhibitor RO-3306 is less active in a TRAP1-high background. Finally, a significant correlation was observed between TRAP1 and Ki67, CDK1 and/or MAD2 expression in breast, colorectal, and lung human tumour specimens. This study represents the first evidence that TRAP1 is relevant in the control of the complex machinery that governs cell cycle progression and mitotic entry and provides a strong rationale to regard TRAP1 as a biomarker to select tumours with deregulated cell cycle progression and thus likely poorly responsive to novel cell cycle inhibitors. Copyright © 2017 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.

摘要

分子伴侣对肿瘤细胞增殖的调控仍是一个复杂的问题。在此,我们在多种人乳腺癌、结直肠癌和肺癌细胞系以及肿瘤标本中研究了热休克蛋白90分子伴侣TRAP1在细胞周期调控中的作用。TRAP1通过双重机制调节关键细胞周期调节因子的表达和/或泛素化:(i)如TRAP1沉默的乳腺癌细胞的基因表达谱所示,对CDK1、细胞周期蛋白B1和MAD2进行转录调控;(ii)对CDK1和MAD2进行转录后质量控制,TRAP1下调时这两种蛋白质的泛素化增强。从机制上讲,TRAP1对CDK1的质量控制对其有丝分裂进入的调控至关重要,因为TRAP1与CDK1相互作用,并与蛋白酶体调节颗粒TBP7协同阻止CDK1泛素化,这是TRAP1调控G2-M期转换的限制因素。事实上,TRAP1沉默导致CDK1泛素化增强、CDK1/细胞周期蛋白B1复合物核转位缺乏以及MAD2降解增加,而CDK1的强制上调在TRAP1缺乏的背景下部分挽救了低水平的细胞周期蛋白B1和MAD2以及G2-M期转换。一致地,CDK1抑制剂RO-3306在TRAP1高表达背景下活性较低。最后,在人乳腺癌、结直肠癌和肺癌肿瘤标本中观察到TRAP1与Ki67、CDK1和/或MAD2表达之间存在显著相关性。本研究首次证明TRAP1在控制细胞周期进程和有丝分裂进入的复杂机制中具有相关性,并为将TRAP1视为一种生物标志物提供了有力依据,以选择细胞周期进程失调且可能对新型细胞周期抑制剂反应不佳的肿瘤。版权所有© 2017英国和爱尔兰病理学会。由约翰·威利父子有限公司出版。

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