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Architecture and pore block of eukaryotic voltage-gated sodium channels in view of NavAb bacterial sodium channel structure

机译:NavAb细菌钠通道结构的真核电压门控钠通道的结构和孔阻滞

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The X-ray structure of the bacterial sodium channel NavAb provides a new template for the study of sodium and calcium channels. Unlike potassium channels, NavAb contains P2 helices in the outer-pore region. Because the sequence similarity between eukaryotic and prokaryotic sodium channels in this region is poor, the structural similarity is unclear. We analyzed it by using experimental data on tetrodotoxin block of sodium channels. Key tetrodotoxin-binding residues are outer carboxylates in repeats I, II, and IV, three positions downstream from the selectivity-filter residues. In a NavAb-based model of Nav1 channels derived from the sequence alignment without insertions/deletions, the outer carboxylates did not face the pore and therefore did not interact with tetrodotoxin. The hypothesis that the evolutionary appearance of Nav1 channels involved point deletions in an ancestral channel between the selectivity filter and the outer carboxylates allowed building of a NavAb-based model with tetrodotoxin-channel contacts similar to those proposed previously. This hypothesis also allowed us to reproduce in Nav1 the folding-stabilizing contacts between long-side chain residues in P1 and P2, which are seen in NavAb. The NavAb-based inner-pore model of Nav1 preserved major features of our previous KcsA-based models, including the access pathway for ligands through the repeat III/IV interface and their interactions with specific residues. Thus, structural properties of eukaryotic voltage-gated sodium channels that are suggested by functional data were reproduced in the NavAb-based models built by using the unaltered template structure but with adjusted sequence alignment. Sequences of eukaryotic calcium channels aligned with NavAb without insertions/deletions, which suggests that NavAb is a promising basis for the modeling of calcium channels.
机译:细菌钠通道NavAb的X射线结构为研究钠和钙通道提供了新的模板。与钾通道不同,NavAb在外孔区域包含P2螺旋。因为该区域中的真核和原核钠通道之间的序列相似性差,所以结构相似性尚不清楚。我们使用钠通道河豚毒素阻断的实验数据对其进行了分析。结合河豚毒素的关键残基是重复序列I,II和IV中的外部羧酸盐,位于选择性过滤器残基下游的三个位置。在基于NavAb的Nav1通道模型中,该序列源自没有插入/缺失的序列比对,外部羧酸盐不面对孔,因此不与河豚毒素相互作用。 Nav1通道的进化外观涉及选择性过滤器和外部羧酸盐之间的祖先通道中的点缺失的假说允许建立基于NavAb的河豚毒素通道接触模型,该模型与先前提出的相似。这个假设也使我们能够在Nav1中重现P1和P2中长侧链残基之间的折叠稳定接触,这在NavAb中可以看到。 Nav1的基于NavAb的内孔模型保留了我们先前基于KcsA的模型的主要功能,包括配体通过重复III / IV界面的访问途径以及它们与特定残基的相互作用。因此,由功能数据表明的真核电压门控钠通道的结构特性在使用不变的模板结构但调节序列比对的基于NavAb的模型中得以再现。无需插入/缺失即可与NavAb对齐的真核钙通道序列,这表明NavAb是钙通道建模的有前途的基础。

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