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Differential Roles of S6 Domain Hinges in the Gating of KCNQ Potassium Channels

机译:S6域铰链在KCNQ钾通道门控中的不同作用

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摘要

Voltage-gated K+ channel activation is proposed to result from simultaneous bending of all S6 segments away from the central axis, enlarging the aperture of the pore sufficiently to permit diffusion of K+ into the water-filled central cavity. The hinge position for the bending motion of each S6 segment is proposed to be a Gly residue and/or a Pro-Val-Pro motif in Kv1–Kv4 channels. The KCNQ1 (Kv7.1) channel has Ala-336 in the Gly-hinge position and Pro-Ala-Gly. Here we show that mutation of Ala-336 to Gly in KCNQ1 increased current amplitude and shifted the voltage dependence of activation to more negative potentials, consistent with facilitation of hinge activity that favors the open state. In contrast, mutation of Ala-336 to Cys or Thr shifted the voltage dependence of activation to more positive potentials and reduced current amplitude. Mutation of the putative Gly hinge to Ala in KCNQ2 (Kv7.2) abolished channel function. Mutation-dependent changes in current amplitude, but not kinetics, were found in heteromeric KCNQ1/KCNE1 channels. Mutation of the Pro or Gly of the Pro-Ala-Gly motif to Ala abolished KCNQ1 function and introduction of Gly in front of the Ala-mutations partially recovered channel function, suggesting that flexibility at the PAG is important for channel activation.
机译:提出电压门控K + 通道激活的原因是,所有S6段都同时弯曲远离中心轴,从而扩大了孔的孔径,足以允许K + 进入充满水的中央空腔。每个S6段的弯曲运动的铰链位置被提议为Kv1-Kv4通道中的Gly残基和/或Pro-Val-Pro基序。 KCNQ1(Kv7.1)频道在Gly-hinge位置具有Pro-Ala-Gly,并且具有Ala-336。在这里,我们显示在KCNQ1中Ala-336突变为Gly会增加电流幅度,并将激活的电压依赖性转移到更多的负电位,这与促进铰链活动有利于打开状态一致。相反,将Ala-336突变为Cys或Thr会使激活的电压依赖性转变为更多的正电势并降低了电流幅度。 KCNQ2(Kv7.2)中假定的Gly铰链与Ala的突变消除了通道功能。在异聚体KCNQ1 / KCNE1通道中发现了电流幅度的突变依赖性变化,但动力学没有变化。 Pro-Ala-Gly基序的Pro或Gly突变为Ala废除了KCNQ1功能,并且在Ala突变的前面引入Gly部分恢复了通道功能,这表明PAG的灵活性对于通道激活很重要。

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