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Tryptophan scanning mutagenesis of the HERG K+ channel: the S4 domain is loosely packed and likely to be lipid exposed

机译:HERG K +通道的色氨酸扫描诱变:S4域包装松散可能暴露在脂质下

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摘要

Inherited mutations or drug-induced block of voltage-gated ion channels, including the human ether-à-go-go-related gene (HERG) K+ channel, are significant causes of malignant arrhythmias and sudden death. The fourth transmembrane domain (S4) of these channels contains multiple positive charges that move across the membrane electric field in response to changes in transmembrane voltage. In HERG K+ channels, the movement of the S4 domain across the transmembrane electric field is particularly slow. To examine the basis of the slow movement of the HERG S4 domain and specifically to probe the relationship between the S4 domain with the lipid bilayer and rest of the channel protein, we individually mutated each of the S4 amino acids in HERG (L524–L539) to tryptophan, and characterized the activation and deactivation properties of the mutant channels in Xenopus oocytes, using two-electrode voltage-clamp methods. Tryptophan has a large bulky hydrophobic sidechain and so should be tolerated at positions that interact with lipid, but not at positions involved in close protein–protein interactions. Significantly, we found that all S4 tryptophan mutants were functional. These data indicate that the S4 domain is loosely packed within the rest of the voltage sensor domain and is likely to be lipid exposed. Further, we identified residues K525, R528 and K538 as being the most important for slow activation of the channels.
机译:电压门控离子通道的遗传突变或药物诱导的阻断,包括人类与人无关的基因(HERG)K + 通道,是恶性心律不齐和猝死的重要原因。这些通道的第四个跨膜结构域(S4)包含多个正电荷,这些正电荷响应于跨膜电压的变化而跨膜电场移动。在HERG K + 通道中,S4域在跨膜电场中的移动特别慢。为了检查HERG S4结构域缓慢移动的基础,特别是探究S4结构域与脂质双层和其余通道蛋白之间的关系,我们分别突变了HERG中的每个S4氨基酸(L524–L539)色氨酸,并使用两电极电压钳方法表征了非洲爪蟾卵母细胞中突变通道的激活和失活特性。色氨酸具有较大的疏松疏水侧链,因此应在与脂质相互作用的位置容忍,但在蛋白与蛋白质之间的紧密相互作用所涉及的位置则不应容忍。重要的是,我们发现所有S4色氨酸突变体均具有功能。这些数据表明,S4域松散地堆积在电压传感器域的其余部分内,并且很可能是脂质暴露的。此外,我们确定了残基K525,R528和K538对缓慢激活通道最重要。

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