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Induction of divalent cation permeability by heterologous expression of a voltage sensor domain

机译:电压传感器域异源表达诱导二价阳离子渗透性

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摘要

The voltage sensor domain (VSD) is a protein domain that confers sensitivity to membrane potential in voltage gated ion channels as well as the voltage-sensing phosphatase. Although VSDs have long been considered to function as regulatory units acting on adjacent effectors, recent studies have revealed the existence of direct ion permeation paths in some mutated VSDs and in the voltage-gated proton channel. In this study, we show that calcium currents are evoked upon membrane hyperpolarization in cells expressing a VSD derived from an ascidian voltage-gated ion channel superfamily. Unlike the previously reported omega-pore in the Shaker K+ channel and rNav1.4, mutations are not required. From electrophysiological experiments in heterologous expression systems, we found that the conductance is directly mediated by the VSD itself and is carried by both monovalent and divalent cations. This is the first report of divalent cation permeation through a VSD-like structure.
机译:电压传感器结构域(VSD)是一种蛋白质结构域,其赋予电压门控离子通道以及电压传感磷酸酶在膜电位的敏感性。 尽管VSD长期以来被认为是作用于相邻效果的监管单位,但最近的研究揭示了一些突变的VSD和电压门控质子通道中的直接离子渗透路径的存在。 在这项研究中,我们表明,在表达衍生自亚因子电压门通道超家族的VSD的细胞中,诱发钙电流。 与先前报道的振动筛K +通道和RNAV1.4不同,不需要突变。 从异源表达系统中的电生理实验中,我们发现电导直接由VSD本身介导,并由单价和二价阳离子进行。 这是通过类似VSD样结构的第一个阳离子渗透的第一报告。

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