首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Neutralization of a single arginine residue gates open a two-pore domain, alkali-activated K+ channel
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Neutralization of a single arginine residue gates open a two-pore domain, alkali-activated K+ channel

机译:单个精氨酸残基门的中和打开了一个两孔结构域,碱激活的K +通道

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摘要

Potassium channels share a common selectivity filter that determines the conduction characteristics of the pore. Diversity in K+ channels is given by how they are gated open. TASK-2, TALK-1, and TALK-2 are two-pore region (2P) KCNK K+ channels gated open by extracellular alkalinization. We have explored the mechanism for this alkalinization-depenclent gating using molecular simulation and site-directed mutagenesis followed by functional assay. We show that the side chain of a single arginine residue (R224) near the pore senses pH in TASK-2 with an unusual pK(a) of 8.0, a shift likely due to its hydrophobic environment. R224 would block the channel through an electrostatic effect on the pore, a situation relieved by its deprotonation by alkalinization. A lysine residue in TALK-2 fulfills the same role but with a largely unchanged pKa, which correlates with an environment that stabilizes its positive charge. In addition to suggesting unified alkaline pH-gating mechanisms within the TALK subfamily of channels, our results illustrate in a physiological context the principle that hydrophobic environment can drastically modulate the pKa of charged amino acids within a protein.
机译:钾通道共享一个公共的选择性过滤器,该过滤器确定孔的传导特性。 K +通道的多样性由门的打开方式决定。 TASK-2,TALK-1和TALK-2是通过细胞外碱化而封闭的两孔区域(2P)KCNK K +通道。我们已经使用分子模拟和定点诱变,然后进行功能分析探索了这种碱化-依赖门控的机制。我们显示,靠近孔的单个精氨酸残基(R224)的侧链可感测TASK-2中的pH,其pK(a)为8.0,这可能是由于其疏水性环境引起的。 R224将通过对孔的静电作用来阻塞通道,这种情况通过碱化使其质子化而得以缓解。 TALK-2中的赖氨酸残基起相同的作用,但pKa基本上不变,这与稳定其正电荷的环境有关。除了在通道的TALK子家族中暗示统一的碱性pH门控机制外,我们的结果还从生理学角度阐明了疏水性环境可以极大地调节蛋白质中带电氨基酸的pKa的原理。

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