Non-conducting functions of ion channels: The case of integrin-ion channel complexes.

Elena Forzisi, Federico Sesti
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引用次数: 5

Abstract

Started as an academic curiosity more than two decades ago, the idea that ion channels can regulate cellular processes in ways that do not depend on their conducting properties (non-ionic functions) gained traction and is now a flourishing area of research. Channels can regulate physiological processes including actin cytoskeletal remodeling, cell motility, excitation-contraction coupling, non-associative learning and embryogenesis, just to mention some, through non-ionic functions. When defective, non-ionic functions can give rise to channelopathies involved in cancer, neurodegenerative disease and brain trauma. Ion channels exert their non-ionic functions through a variety of mechanisms that range from physical coupling with other proteins, to possessing enzymatic activity, to assembling with signaling molecules. In this article, we take stock of the field and review recent findings. The concept that emerges, is that one of the most common ways through which channels acquire non-ionic attributes, is by assembling with integrins. These integrin-channel complexes exhibit broad genotypic and phenotypic heterogeneity and reveal a pleiotropic nature, as they appear to be capable of influencing both physiological and pathological processes.

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离子通道的非导电功能:整合离子通道复合物的情况。
二十多年前,作为一个学术好奇心,离子通道可以以不依赖于其导电特性(非离子功能)的方式调节细胞过程的想法获得了关注,现在是一个蓬勃发展的研究领域。通道可以通过非离子功能调节肌动蛋白细胞骨架重塑、细胞运动、兴奋-收缩耦合、非联想学习和胚胎发生等生理过程。当非离子功能有缺陷时,可引起与癌症、神经退行性疾病和脑外伤有关的通道病变。离子通道通过多种机制发挥其非离子功能,从与其他蛋白质的物理偶联,到具有酶活性,再到与信号分子组装。在本文中,我们对该领域进行了评估,并回顾了最近的发现。由此产生的概念是,通道获得非离子属性的最常见方式之一是与整合素结合。这些整合素通道复合物表现出广泛的基因型和表型异质性,并显示出多效性,因为它们似乎能够影响生理和病理过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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