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作用于人类电压门控钾通道 hKv1.3 及其 H399N 突变体的 Charybdotoxin 和 Margatoxin:实验与计算比较。

Charybdotoxin and margatoxin acting on the human voltage-gated potassium channel hKv1.3 and its H399N mutant: an experimental and computational comparison.

机构信息

Institute of Applied Physiology, Ulm University, Ulm, Germany.

出版信息

J Phys Chem B. 2012 May 3;116(17):5132-40. doi: 10.1021/jp2102463. Epub 2012 Apr 19.

Abstract

The effect of the pore-blocking peptides charybdotoxin and margatoxin, both scorpion toxins, on currents through human voltage-gated hK(v)1.3 wild-type and hK(v)1.3_H399N mutant potassium channels was characterized by the whole-cell patch clamp technique. In the mutant channels, both toxins hardly blocked current through the channels, although they did prevent C-type inactivation by slowing down the current decay during depolarization. Molecular dynamics simulations suggested that the fast current decay in the mutant channel was a consequence of amino acid reorientations behind the selectivity filter and indicated that the rigidity-flexibility in that region played a key role in its interactions with scorpion toxins. A channel with a slightly more flexible selectivity filter region exhibits distinct interactions with scorpion toxins. Our studies suggest that the toxin-channel interactions might partially restore rigidity in the selectivity filter and thereby prevent the structural rearrangements associated with C-type inactivation.

摘要

采用全细胞膜片钳技术研究了两种蝎毒素(蜂毒素和玛格毒素)对人电压门控 hK(v)1.3 野生型和 hK(v)1.3_H399N 突变型钾通道电流的影响。在突变通道中,尽管两种毒素通过减缓去极化过程中电流衰减来阻止 C 型失活,但它们几乎不能阻断通道电流。分子动力学模拟表明,突变通道中电流的快速衰减是由于选择性滤器后面的氨基酸重排引起的,并表明该区域的刚性-柔性在与蝎毒素相互作用中起关键作用。具有稍灵活选择性滤器区域的通道与蝎毒素表现出明显的相互作用。我们的研究表明,毒素-通道相互作用可能部分恢复选择性滤器的刚性,从而防止与 C 型失活相关的结构重排。

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