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钙通道β亚基的蛋白质伴侣揭示了新的细胞功能。

Protein partners of the calcium channel β subunit highlight new cellular functions.

作者信息

Rima Mohamad, Daghsni Marwa, Fajloun Ziad, M'rad Ridha, Brusés Juan L, Ronjat Michel, De Waard Michel

机构信息

LabEx Ion Channels, Science and Therapeutics, INSERM UMR1087/CNRS UMR6291, l'institut du Thorax, Nantes F-44000, France Azm Center for Research in Biotechnology and its Application, Lebanese University, 1300 Tripoli, Lebanon.

LabEx Ion Channels, Science and Therapeutics, INSERM UMR1087/CNRS UMR6291, l'institut du Thorax, Nantes F-44000, France Laboratory of Human Genetics, Doctoral School of Science and Biotechnology, Faculty of Medicine of Tunis, University of Tunis El Manar, 1007 Tunis, Tunisia.

出版信息

Biochem J. 2016 Jul 1;473(13):1831-44. doi: 10.1042/BCJ20160125.

Abstract

Calcium plays a key role in cell signalling by its intervention in a wide range of physiological processes. Its entry into cells occurs mainly via voltage-gated calcium channels (VGCC), which are found not only in the plasma membrane of excitable cells but also in cells insensitive to electrical signals. VGCC are composed of different subunits, α1, β, α2δ and γ, among which the cytosolic β subunit (Cavβ) controls the trafficking of the channel to the plasma membrane, its regulation and its gating properties. For many years, these were the main functions associated with Cavβ. However, a growing number of proteins have been found to interact with Cavβ, emphasizing the multifunctional role of this versatile protein. Interestingly, some of the newly assigned functions of Cavβ are independent of its role in the regulation of VGCC, and thus further increase its functional roles. Based on the identity of Cavβ protein partners, this review emphasizes the diverse cellular functions of Cavβ and summarizes both past findings as well as recent progress in the understanding of VGCC.

摘要

钙通过参与多种生理过程,在细胞信号传导中发挥关键作用。钙进入细胞主要通过电压门控钙通道(VGCC),这些通道不仅存在于可兴奋细胞的质膜中,也存在于对电信号不敏感的细胞中。VGCC由不同的亚基组成,α1、β、α2δ和γ,其中胞质β亚基(Cavβ)控制通道向质膜的运输、其调节及其门控特性。多年来,这些是与Cavβ相关的主要功能。然而,已发现越来越多的蛋白质与Cavβ相互作用,这凸显了这种多功能蛋白质的多重功能作用。有趣的是,Cavβ一些新赋予的功能独立于其在VGCC调节中的作用,从而进一步增加了其功能作用。基于Cavβ蛋白质伙伴的特性,本综述强调了Cavβ的多种细胞功能,并总结了过去的研究结果以及在VGCC理解方面的最新进展。

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