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New Structures and Gating of Voltage-Dependent Potassium (Kv) Channels and Their Relatives: A Multi-Domain and Dynamic Question

机译:电压依赖性钾(Kv)通道及其相关物的新结构和门控:多域动态问题

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摘要

Voltage-dependent potassium channels (Kv channels) are crucial regulators of cell excitability that participate in a range of physiological and pathophysiological processes. These channels are molecular machines that display a mechanism (known as gating) for opening and closing a gate located in a pore domain (PD). In Kv channels, this mechanism is triggered and controlled by changes in the magnitude of the transmembrane voltage sensed by a voltage-sensing domain (VSD). In this review, we consider several aspects of the VSD–PD coupling in Kv channels, and in some relatives, that share a common general structure characterized by a single square-shaped ion conduction pore in the center, surrounded by four VSDs located at the periphery. We compile some recent advances in the knowledge of their architecture, based in cryo-electron microscopy (cryo-EM) data for high-resolution determination of their structure, plus some new functional data obtained with channel variants in which the covalent continuity between the VSD and PD modules has been interrupted. These advances and new data bring about some reconsiderations about the use of exclusively a classical electromechanical lever model of VSD–PD coupling by some Kv channels, and open a view of the Kv-type channels as allosteric machines in which gating may be dynamically influenced by some long-range interactional/allosteric mechanisms.
机译:电压依赖性钾通道(Kv通道)是细胞兴奋性的重要调节剂,参与一系列生理和病理生理过程。这些通道是分子机器,显示用于打开和关闭位于孔结构域(PD)中的浇口的机制(称为门控)。在Kv通道中,此机制由电压感测域(VSD)感测到的跨膜电压幅度的变化来触发和控制。在这篇综述中,我们考虑了Kv通道中VSD-PD耦合的几个方面,并且在某些亲戚中,它们具有一个共同的通用结构,其特征是中心有一个正方形的离子传导孔,周围有四个VSD。周边。我们基于低温电子显微镜(cryo-EM)数据(用于高分辨率确定其结构)以及通过通道变异获得的一些新功能数据(其中VSD之间的共价连续性),汇编了有关其体系结构知识的最新进展PD模块已中断。这些进步和新数据带来了一些重新思考,即某些Kv通道仅使用VSD-PD耦合的经典机电杠杆模型,并打开了Kv型通道作为变构机器的观点,其中门控可能会受到动态影响。一些远程相互作用/变构机制。

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