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Probing the effects of gating on the ion occupancy of the K+ channel selectivity filter using 2D IR spectroscopy

机译:使用2D红外光谱探测门控对K +通道选择性滤光片的离子占有率的影响

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摘要

The interplay between the intracellular gate and the selectivity filter underlies the structural basis for gating in potassium ion channels. Using a combination of protein semisynthesis, two-dimensional infrared (2D IR) spectroscopy, and molecular dynamics (MD) simulations, we probe the ion occupancy at the S1 binding site in the constricted state of the selectivity filter of the KcsA channel when the intracellular gate is open and closed. The 2D IR spectra resolve two features, whose relative intensities depend on the state of the intracellular gate. By matching the experiment to calculated 2D IR spectra of structures predicted by MD simulations, we identify the two features as corresponding to states with S1 occupied or unoccupied by K+. We learn that S1 is >70% occupied when the intracellular gate is closed and <15% occupied when the gate is open. Comparison of MD trajectories show that opening of the intracellular gate causes a structural change in the selectivity filter, which leads to a change in the ion occupancy. This work reveals the complexity of the conformational landscape of the K+ channel selectivity filter and its dependence on the state of the intracellular gate.
机译:细胞内门与选择性过滤器之间的相互作用为钾离子通道门控的结构基础奠定了基础。使用蛋白质半合成,二维红外(2D IR)光谱和分子动力学(MD)模拟的组合,我们在细胞内时,在KcsA通道选择性过滤器的收缩状态下,探测S1结合位点的离子占有率门是打开和关闭。二维红外光谱解析了两个特征,其相对强度取决于细胞内门的状态。通过将实验与通过MD模拟预测的结构的2D红外光谱进行匹配,我们确定了两个特征与S1被K + 占据或未被占据的状态相对应。我们了解到,当细胞内门关闭时,S1占据了70%以上的位置,而当门打开时,S1被占据了<15%的水平。 MD轨迹的比较表明,胞内门的打开会导致选择性过滤器发生结构变化,从而导致离子占有率发生变化。这项工作揭示了K + 通道选择性过滤器构象构图的复杂性及其对细胞内门状态的依赖性。

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