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PNAS Plus: BK channel opening involves side-chain reorientation of multiple deep-pore residues

机译:PNAS Plus:BK通道开放涉及多个深孔残基的侧链重新定向

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摘要

Three deep-pore locations, L312, A313, and A316, were identified in a scanning mutagenesis study of the BK (Ca2+-activated, large-conductance K+) channel S6 pore, where single aspartate substitutions led to constitutively open mutant channels (L312D, A313D, and A316D). To understand the mechanisms of the constitutive openness of these mutant channels, we individually mutated these three sites into the other 18 amino acids. We found that charged or polar side-chain substitutions at each of the sites resulted in constitutively open mutant BK channels, with high open probability at negative voltages, as well as a loss of voltage and Ca2+ dependence. Given the fact that multiple pore residues in BK displayed side-chain hydrophilicity-dependent constitutive openness, we propose that BK channel opening involves structural rearrangement of the deep-pore region, where multiple residues undergo conformational changes that may increase the exposure of their side chains to the polar environment of the pore.
机译:在BK的扫描诱变研究中确定了三个深孔位置L312,A313和A316(Ca 2 + 激活的大电导K + )通道S6孔,其中单个天冬氨酸取代导致组成性开放突变通道(L312D,A313D和A316D)。为了了解这些突变体通道的组成开放性的机制,我们将这三个位点分别突变为其他18个氨基酸。我们发现,每个位点的带电或极性侧链取代均导致组成性开放的突变体BK通道,在负电压下具有很高的开放可能性,并且失去电压和Ca 2 + 依赖性。鉴于BK中的多个孔残基显示出侧链亲水性相关的本构开放性这一事实,我们建议BK通道开放涉及深孔区域的结构重排,其中多个残基经历构象变化,这可能会增加其侧链的暴露到毛孔的极性环境。

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