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IR Spectroscopy Can Reveal the Mechanism of K+ Transport in Ion Channels

机译:IR光谱可以揭示离子通道中K +传输的机制

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摘要

Ion channels like KcsA enable ions to move across cell membranes at near diffusion-limited rates and with very high selectivity. Various mechanisms have been proposed to explain this phenomenon. Broadly, there is disagreement among the proposed mechanisms about whether ions occupy adjacent sites in the channel during the transport process. Here, using a mixed quantum-classical approach to calculate theoretical infrared spectra, we propose a set of infrared spectroscopy experiments that can discriminate between mechanisms with and without adjacent ions. These experiments differ from previous ones in that they independently probe specific ion binding sites within the selectivity filter. When ions occupy adjacent sites in the selectivity filter, the predicted spectra are significantly redshifted relative to when ions do not occupy adjacent sites. Comparisons between theoretical and experimental peak frequencies will therefore discriminate the mechanisms.
机译:像KCSA这样的离子通道使离子能够在近漫射限制速率下穿过细胞膜,并且具有非常高的选择性。已经提出了各种机制来解释这种现象。大众化的是,在运输过程中是关于离子是否占据渠道中的相邻点的拟议机制之间存在分歧。这里,使用混合量子古典方法来计算理论红外光谱,我们提出了一组红外光谱实验,该实验可以区分在具有和不具有相邻离子的机制之间。这些实验与之前的实验不同,因为它们在选择性过滤器中独立地探测特异性离子结合位点。当离子在选择性滤波器中占据相邻点时,当离子不占据相邻地点时,预测光谱是显着的红移。因此,理论和实验峰值频率之间的比较将区分机制。

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