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癌组织中 Cdc42 信号的分子颠覆。

Molecular subversion of Cdc42 signalling in cancer.

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, U.K.

Bioprocess Technology Division, School of Industrial Technology, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

Biochem Soc Trans. 2021 Jun 30;49(3):1425-1442. doi: 10.1042/BST20200557.

Abstract

Cdc42 is a member of the Rho family of small GTPases and a master regulator of the actin cytoskeleton, controlling cell motility, polarity and cell cycle progression. This small G protein and its regulators have been the subject of many years of fruitful investigation and the advent of functional genomics and proteomics has opened up new avenues of exploration including how it functions at specific locations in the cell. This has coincided with the introduction of new structural techniques with the ability to study small GTPases in the context of the membrane. The role of Cdc42 in cancer is well established but the molecular details of its action are still being uncovered. Here we review alterations found to Cdc42 itself and to key components of the signal transduction pathways it controls in cancer. Given the challenges encountered with targeting small G proteins directly therapeutically, it is arguably the regulators of Cdc42 and the effector signalling pathways downstream of the small G protein which will be the most tractable targets for therapeutic intervention. These will require interrogation in order to fully understand the global signalling contribution of Cdc42, unlock the potential for mapping new signalling axes and ultimately produce inhibitors of Cdc42 driven signalling.

摘要

Cdc42 是 Rho 家族小 GTP 酶的成员,也是肌动蛋白细胞骨架的主要调节因子,控制着细胞的运动性、极性和细胞周期进程。多年来,这种小 G 蛋白及其调节剂一直是富有成果的研究主题,功能基因组学和蛋白质组学的出现开辟了新的探索途径,包括它在细胞内特定位置的功能。这与新的结构技术的引入同时发生,这些技术能够在膜的背景下研究小 GTP 酶。Cdc42 在癌症中的作用已经得到很好的证实,但它的作用的分子细节仍在被揭示。在这里,我们回顾了在癌症中发现的 Cdc42 本身以及它所控制的信号转导途径的关键组成部分的改变。鉴于直接针对小 G 蛋白进行治疗所面临的挑战,可以说 Cdc42 的调节剂以及小 G 蛋白下游的效应信号通路将是最具可操作性的治疗干预靶点。这些需要进行询问,以便充分了解 Cdc42 的全局信号贡献,释放映射新信号轴的潜力,并最终产生 Cdc42 驱动的信号抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18b4/8412110/57a96060613f/BST-49-1425-g0001.jpg

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