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人参皂苷Rg3诱导hERG1通道门控改变的分子基础

Molecular Basis of Altered hERG1 Channel Gating Induced by Ginsenoside Rg3.

作者信息

Gardner Alison, Wu Wei, Thomson Steven, Zangerl-Plessl Eva-Maria, Stary-Weinzinger Anna, Sanguinetti Michael C

机构信息

Nora Eccles Harrison Cardiovascular Research and Training Institute (A.G., W.W., S.T., M.C.S.) and Division of Cardiovascular Medicine, Department of Internal Medicine, (M.C.S.), University of Utah, Salt Lake City, Utah; and Department of Pharmacology and Toxicology, University of Vienna, Vienna, Austria (E.-M.Z.-P., A.S.-W.).

Nora Eccles Harrison Cardiovascular Research and Training Institute (A.G., W.W., S.T., M.C.S.) and Division of Cardiovascular Medicine, Department of Internal Medicine, (M.C.S.), University of Utah, Salt Lake City, Utah; and Department of Pharmacology and Toxicology, University of Vienna, Vienna, Austria (E.-M.Z.-P., A.S.-W.)

出版信息

Mol Pharmacol. 2017 Oct;92(4):437-450. doi: 10.1124/mol.117.108886. Epub 2017 Jul 13.

Abstract

Outward current conducted by human -related gene type 1 (hERG1) channels is a major determinant of action potential repolarization in the human ventricle. Ginsenoside 20()-Rg3 [Rg3; (2,3,4,5,6)-2-[(2,3,4,5,6)-4,5-dihydroxy-2-[[(3,5,8,9,10,12,13,14,17)-12-hydroxy-17-[(2)-2-hydroxy-6-methylhept-5-en-2-yl]-4,4,8,10,14-pentamethyl-2,3,5,6,7,9,11,12,13,15,16,17-dodecahydro-1-cyclopenta[]phenanthren-3-yl]oxy]-6-(hydroxymethyl)oxan-3-yl]oxy-6-(hydroxymethyl)oxane-3,4,5-triol], an alkaloid isolated from the root of , slows the rate of hERG1 deactivation, induces channels to open at more negative potentials than normal, and increases current magnitude. The onset of Rg3 action is extremely fast, suggesting that it binds to an extracellular accessible site on the channel to alter its gating. Here we used a scanning mutagenesis approach to identify residues in the extracellular loops and transmembrane segments of hERG1 that might interact with Rg3. Single or multiple residues of hERG1 were mutated to Ala or Cys and the resulting mutant channels were heterologously expressed in oocytes. The effects of Rg3 on the voltage dependence of activation and the deactivation rate of mutant channel currents were characterized using the two-microelectrode voltage clamp technique. Mutation to Ala of specific residues in the S1 (Tyr420), S2 (Leu452, Phe463), and S4 (Ile521, Lys525) segments partially inhibited the effects of Rg3 on hERG1. The double mutant Y420A/L452A nearly eliminated the effects of Rg3 on voltage-dependent channel gating but did not prevent the increase in current magnitude. These findings together with molecular modeling suggest that Rg3 alters the gating of hERG1 channels by interacting with and stabilizing the voltage sensor domain in an activated state.

摘要

由人类相关基因1型(hERG1)通道传导的外向电流是人心室动作电位复极化的主要决定因素。人参皂苷20(S)-Rg3 [Rg3;(2,3,4,5,6)-2-[(2,3,4,5,6)-4,5-二羟基-2-[[(3,5,8,9,10,12,13,14,17)-12-羟基-17-[(2)-2-羟基-6-甲基庚-5-烯-2-基]-4,4,8,10,14-五甲基-2,3,5,6,7,9,11,12,13,15,16,17-十二氢-1-环戊烷[]菲-3-基]氧基]-6-(羟甲基)氧杂环-3-基]氧基-6-(羟甲基)氧杂环-3,4,5-三醇],一种从人参根中分离出的生物碱,减缓了hERG1失活的速率,诱导通道在比正常情况更负的电位下开放,并增加电流幅度。Rg3作用的起效极快,表明它与通道上细胞外可及位点结合以改变其门控。在此,我们使用扫描诱变方法来鉴定hERG1细胞外环和跨膜片段中可能与Rg3相互作用的残基。将hERG1的单个或多个残基突变为丙氨酸或半胱氨酸,并将所得突变通道在卵母细胞中异源表达。使用双微电极电压钳技术表征Rg3对突变通道电流激活的电压依赖性和失活速率的影响。S1(Tyr420)、S2(Leu452、Phe463)和S4(Ile521、Lys525)片段中特定残基突变为丙氨酸部分抑制了Rg3对hERG1的作用。双突变体Y420A/L452A几乎消除了Rg3对电压依赖性通道门控的作用,但并未阻止电流幅度的增加。这些发现与分子建模一起表明,Rg3通过与激活状态下的电压传感器结构域相互作用并使其稳定来改变hERG1通道的门控。

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