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Clockwise Domain Arrangement of the Sodium Channel Revealed by μ-Conotoxin (GIIIA) Docking Orientation

机译:钠通道的顺时针域排列由μ-芋螺毒素(GIIIa)对接方向显示

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摘要

μ-Conotoxins (μ-CTXs) specifically inhibit Na+ flux by occluding the pore of voltage-gated Na+ channels. Although the three-dimensional structures of μ-CTXs are well defined, the molecular configuration of the channel receptor is much less certain; even the fundamental question of whether the four homologous Na+ channel domains are arranged in a clockwise or counter-clockwise configuration remains unanswered. Residues Asp762 and Glu765 from domain II and Asp1241 from domain III of rat skeletal muscle Na+ channels are known to be critical for μ-CTX binding. We probed toxin-channel interactions by determining the potency of block of wild-type, D762K, E765K, and D1241C channels by wild-type and point-mutated μ-CTXs (R1A, Q14D, K11A, K16A, and R19A). Individual interaction energies for different toxin-channel pairs were quantified from the half-blocking concentrations using mutant cycle analysis. We find that Asp762 and Glu765 interact strongly with Gln14 and Arg19 but not Arg1 and that Asp1241 is tightly coupled to Lys16 but not Arg 1 or Lys11. These newly identified toxin-channel interactions within adjacent domains, interpreted in light of the known asymmetric toxin structure, fix the orientation of the toxin with respect to the channel and reveal that the four internal domains of Na+ channels are arranged in a clockwise configuration as viewed from the extracellular surface.
机译:μ-芋螺毒素(μ-CTXs)通过阻塞电压门控Na +通道的孔来特异性抑制Na +通量。尽管μ-CTX的三维结构定义明确,但通道受体的分子构型却不确定得多。甚至四个同源的Na +通道域是以顺时针还是逆时针排列的基本问题仍然没有得到解答。已知来自大鼠骨骼肌Na +通道的结构域II的残基Asp762和Glu765和来自结构域III的Asp1241对μ-CTX结合至关重要。我们通过确定野生型和点突变μ-CTX(R1A,Q14D,K11A,K16A和R19A)对野生型,D762K,E765K和D1241C通道的阻滞能力来探测毒素通道之间的相互作用。使用突变周期分析,从半封闭浓度对不同毒素通道对的个体相互作用能进行了定量。我们发现,Asp762和Glu765与Gln14和Arg19强烈相互作用,但与Arg1没有强相互作用,并且Asp1241与Lys16紧密耦合,但与Arg 1或Lys11没有紧密耦合。根据已知的不对称毒素结构来解释这些相邻域内新发现的毒素通道相互作用,从而固定了毒素相对于通道的方向,并揭示了Na +通道的四个内部域以顺时针方向排列从细胞外表面。

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