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A Selectivity Filter Gate Controls Voltage-Gated Calcium Channel Calcium-Dependent Inactivation

机译:选择性滤波器门控制电压门控钙通道钙依赖性灭活

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摘要

Calcium-dependent inactivation (CDI) is a fundamental autoregulatory mechanism in Ca(V)1 and Ca(V)2 voltage-gated calcium channels. Although CDI initiates with the cytoplasmic calcium sensor, how this event causes CDI has been elusive. Here, we show that a conserved selectivity filter (SF) domain II (DII) aspartate is essential for CDI. Mutation of this residue essentially eliminates CDI and leaves key channel biophysical characteristics untouched. DII mutants regain CDI by placing an aspartate at the analogous SF site in DIII or DIV, but not DI, indicating that Ca-V SF asymmetry is key to CDI. Together, our data establish that the Ca(V)z SF is the CDI endpoint. Discovery of this SF CDI gate recasts the Ca-V inactivation paradigm, placing it squarely in the framework of voltage-gated ion channel (VGIC) superfamily members in which SF-based gating is important. This commonality suggests that SF inactivation is an ancient process arising from the shared VGIC pore architecture.
机译:依赖性灭活(CDI)是Ca(v)1和Ca(v)2电压门控钙通道的基本自身疗养机制。 虽然CDI与细胞质钙传感器发起,但该事件如何导致CDI难以捉摸。 在这里,我们表明保守的选择性过滤器(SF)结构域II(DII)天冬氨酸对于CDI至关重要。 该残余物的突变基本上消除了CDI和留下关键信道生物物理特性的不受影响。 DII突变体通过在DIII或DIV的类似SF位点将天冬氨酸置于DIII或DIV,但不是DI,表明CA-V SF不对称是CDI的关键。 我们的数据共同建立了CA(v)z sf是CDI端点。 该SF CDI门的发现重新定位CA-V灭活范式,将其正直放置在电压门的离子通道(VGIC)超家族成员的框架中,其中基于SF的门控是重要的。 这种共性表明,SF失活是来自共享VGIC孔架构产生的古老过程。

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  • 来源
    《Neuron》 |2019年第6期|共19页
  • 作者单位

    Univ Calif San Francisco Cardiovasc Res Inst San Francisco CA 93858 USA;

    Univ Calif San Francisco Cardiovasc Res Inst San Francisco CA 93858 USA;

    Univ Calif San Francisco Cardiovasc Res Inst San Francisco CA 93858 USA;

    Univ Calif San Francisco Cardiovasc Res Inst San Francisco CA 93858 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

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