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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Molecular dynamics simulations investigate the mechanism of Psalmotoxin 1 regulating gating process of an acid-sensing ion channel 1a at pH 5.5
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Molecular dynamics simulations investigate the mechanism of Psalmotoxin 1 regulating gating process of an acid-sensing ion channel 1a at pH 5.5

机译:分子动力学模拟研究了pH 5.5酸感测离子通道1A调节蛋白酶1调节术术机理的机理

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摘要

Acid-sensing ion channel 1a (ASIC1a) is a cation channel activated by protons and causes neuronal death through central nervous system. Psalmotoxin1 (PcTx1) is a gating modifier for ASIC1a. The process of PcTx1 regulating the channel gating from the extracellular domain to the transmembrane domain is unclear. Here we used molecular dynamics (MD) simulations method to investigate how PcTx1 regulates the gating of the ASIC1a. Our results indicated that PcTx1can mainly regulate ASIC1a gating process through hydrogen bonds, which can affect their relative positions of several key domains in ASIC1a, further, a long-range conformational changes path was determined, which is composed of beta 1, beta 2, beta 10, alpha 6, alpha 7, beta 11, and beta 12 in ASIC1a.
机译:酸感测离子通道1a(ASIC1a)是由质子激活的阳离子通道,并通过中枢神经系统引起神经元死亡。 蛋白质毒素1(PCTX1)是ASIC1a的门控改性剂。 调节从细胞外结构域到跨膜结构域的通道的PCTX1的过程尚不清楚。 在这里,我们使用了分子动力学(MD)模拟方法来研究PCTX1如何调节ASIC1A的门控。 我们的结果表明,PCTX1CAN主要通过氢键调节ASIC1A Gating方法,这可以影响ASIC1a中的几个关键结构域的相对位置,进一步地确定了长范围的构象变化路径,其由β1,β2,β组成。 10,Alpha 6,α7,β11和ASIC1a中的β12。

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