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WWC蛋白:癌症中Hippo信号通路的重要调节因子。

WWC Proteins: Important Regulators of Hippo Signaling in Cancer.

作者信息

Höffken Verena, Hermann Anke, Pavenstädt Hermann, Kremerskothen Joachim

机构信息

Internal Medicine D, Department of Nephrology, Hypertension and Rheumatology, University Hospital Münster, 48147 Münster, Germany.

出版信息

Cancers (Basel). 2021 Jan 15;13(2):306. doi: 10.3390/cancers13020306.

Abstract

The Hippo signaling pathway is known to regulate cell differentiation, proliferation and apoptosis. Whereas activation of the Hippo signaling pathway leads to phosphorylation and cytoplasmic retention of the transcriptional coactivator YAP, decreased Hippo signaling results in nuclear import of YAP and subsequent transcription of pro-proliferative genes. Hence, a dynamic and precise regulation of the Hippo signaling pathway is crucial for organ size control and the prevention of tumor formation. The transcriptional activity of YAP is controlled by a growing number of upstream regulators including the family of WWC proteins. WWC1, WWC2 and WWC3 represent cytosolic scaffolding proteins involved in intracellular transport processes and different signal transduction pathways. Earlier in vitro experiments demonstrated that WWC proteins positively regulate the Hippo pathway via the activation of large tumor suppressor kinases 1/2 (LATS1/2) kinases and the subsequent cytoplasmic accumulation of phosphorylated YAP. Later, reduced WWC expression and subsequent high YAP activity were shown to correlate with the progression of human cancer in different organs. Although the function of WWC proteins as upstream regulators of Hippo signaling was confirmed in various studies, their important role as tumor modulators is often overlooked. This review has been designed to provide an update on the published data linking WWC1, WWC2 and WWC3 to cancer, with a focus on Hippo pathway-dependent mechanisms.

摘要

已知河马信号通路可调节细胞分化、增殖和凋亡。河马信号通路的激活会导致转录共激活因子YAP磷酸化并滞留于细胞质中,而河马信号通路活性降低则会导致YAP进入细胞核,并随后转录促增殖基因。因此,对河马信号通路进行动态而精确的调控对于器官大小控制和预防肿瘤形成至关重要。YAP的转录活性受越来越多的上游调节因子控制,包括WWC蛋白家族。WWC1、WWC2和WWC3代表参与细胞内运输过程和不同信号转导途径的胞质支架蛋白。早期的体外实验表明,WWC蛋白通过激活大肿瘤抑制激酶1/2(LATS1/2)激酶以及随后磷酸化YAP在细胞质中的积累来正向调节河马信号通路。后来,研究表明WWC表达降低及随后的高YAP活性与不同器官中人类癌症的进展相关。尽管在各种研究中证实了WWC蛋白作为河马信号上游调节因子的功能,但其作为肿瘤调节因子的重要作用常常被忽视。本综述旨在提供已发表数据的最新信息,这些数据将WWC1、WWC2和WWC3与癌症联系起来,重点关注河马信号通路依赖性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5679/7829927/12f67f0b99d6/cancers-13-00306-g001.jpg

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