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Two alternative conformations of a voltage-gated sodium channel

机译:电压门控钠通道的两种替代构造

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摘要

Activation and inactivation of voltage-gated sodium channels (Navs) are well studied, yet the molecular mechanisms governing channel gating in the membrane remain unknown. We present two conformations of a Nav from Caldalkalibacillus thermarum reconstituted into lipid bilayers in one crystal at 9 ? resolution based on electron crystallography. Despite a voltage sensor arrangement identical with that in the activated form, we observed two distinct pore domain structures: a prominent form with a relatively open inner gate and a closed inner-gate conformation similar to the first prokaryotic Nav structure. Structural differences, together with mutational and electrophysiological analyses, indicated that widening of the inner gate was dependent on interactions among the S4-S5 linker, the N-terminal part of S5 and its adjoining part in S6, and on interhelical repulsion by a negatively charged C-terminal region subsequent to S6. Our findings suggest that these specific interactions result in two conformational structures.
机译:电压门控钠通道(Navs)的激活和失活已得到很好的研究,但是控制膜中通道门控的分子机制仍然未知。我们提出了两种来自构象的Caldalkalibacillus thermarum Nav的构象,该构象在一个9点处重构为脂质双层。基于电子晶体学的分辨率。尽管电压传感器的布置与激活形式相同,我们还是观察到了两个不同的孔域结构:与第一原核Nav结构相似的具有相对开放的内门和闭合的内门构象的突出形式。结构差异以及突变和电生理分析表明,内门的扩展取决于S4-S5接头,S5的N端部分及其在S6的相邻部分之间的相互作用以及负电荷的螺旋间排斥S6之后的C端区域。我们的发现表明,这些特定的相互作用导致两个构象结构。

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