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塑造四跨膜蛋白网络的分子相互作用。

Molecular interactions shaping the tetraspanin web.

作者信息

van Deventer Sjoerd J, Dunlock Vera-Marie E, van Spriel Annemiek B

机构信息

Department of Tumor Immunology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, 6525GA Nijmegen, The Netherlands

出版信息

Biochem Soc Trans. 2017 Jun 15;45(3):741-750. doi: 10.1042/BST20160284.

Abstract

To facilitate the myriad of different (signaling) processes that take place at the plasma membrane, cells depend on a high degree of membrane protein organization. Important mediators of this organization are tetraspanin proteins. Tetraspanins interact laterally among themselves and with partner proteins to control the spatial organization of membrane proteins in large networks called the tetraspanin web. The molecular interactions underlying the formation of the tetraspanin web were hitherto mainly described based on their resistance to different detergents, a classification which does not necessarily correlate with functionality in the living cell. To look at these interactions from a more physiological point of view, this review discusses tetraspanin interactions based on their function in the tetraspanin web: (1) intramolecular interactions supporting tetraspanin structure, (2) tetraspanin-tetraspanin interactions supporting web formation, (3) tetraspanin-partner interactions adding functional partners to the web and (4) cytosolic tetraspanin interactions regulating intracellular signaling. The recent publication of the first full-length tetraspanin crystal structure sheds new light on both the intra- and intermolecular tetraspanin interactions that shape the tetraspanin web. Furthermore, recent molecular dynamic modeling studies indicate that the binding strength between tetraspanins and between tetraspanins and their partners is the complex sum of both promiscuous and specific interactions. A deeper insight into this complex mixture of interactions is essential to our fundamental understanding of the tetraspanin web and its dynamics which constitute a basic building block of the cell surface.

摘要

为了促进质膜上发生的无数不同(信号传导)过程,细胞依赖于高度的膜蛋白组织。这种组织的重要介导因子是四跨膜蛋白。四跨膜蛋白彼此之间以及与伴侣蛋白横向相互作用,以控制膜蛋白在称为四跨膜蛋白网络的大型网络中的空间组织。迄今为止,四跨膜蛋白网络形成背后的分子相互作用主要是根据它们对不同去污剂的抗性来描述的,这种分类不一定与活细胞中的功能相关。为了从更生理学的角度看待这些相互作用,本综述基于四跨膜蛋白在四跨膜蛋白网络中的功能讨论四跨膜蛋白相互作用:(1)支持四跨膜蛋白结构的分子内相互作用,(2)支持网络形成的四跨膜蛋白-四跨膜蛋白相互作用,(3)为网络添加功能伴侣的四跨膜蛋白-伴侣相互作用,以及(4)调节细胞内信号传导的胞质四跨膜蛋白相互作用。首个全长四跨膜蛋白晶体结构的最新发表为塑造四跨膜蛋白网络的分子内和分子间四跨膜蛋白相互作用提供了新的线索。此外,最近的分子动力学建模研究表明,四跨膜蛋白之间以及四跨膜蛋白与其伴侣之间的结合强度是混杂相互作用和特异性相互作用的复杂总和。深入了解这种复杂的相互作用混合物对于我们对四跨膜蛋白网络及其动力学的基本理解至关重要,而四跨膜蛋白网络及其动力学构成了细胞表面的基本组成部分。

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