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首页> 外文期刊>Biophysical Journal >K+/Na+ selectivity in toy cation binding site models is determined by the 'host'.
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K+/Na+ selectivity in toy cation binding site models is determined by the 'host'.

机译:玩具阳离子结合位点模型中的K + / Na +选择性由“宿主”决定。

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摘要

The macroscopic ion-selective behavior of K(+) channels is mediated by a multitude of physiological factors. However, considering the carbonyl-lined binding site of a conductive K(+) channel as a canonical eightfold coordinated construct can be useful in understanding the principles that correlate the channel's structure with its function. We probe the effects of structure and chemical composition on the K(+)/Na(+) selectivity provided by a variety of simplified droplet-like ion binding site models. We find that when carbonyl- and water-based models capture the qualitative structural features of the K(+) channel binding site, a selective preference for K(+) emerges. Thus our findings suggest that the preference for K(+) over Na(+) exhibited by such models is principally built-in, and is not due to a unique K(+)-selective property of carbonyl functional groups. This suggestion is confirmed by a general thermodynamic assessment, which provides a basis for using simplified models to study the design principles underlying the molecular evolution of K(+) channels.
机译:K(+)通道的宏观离子选择性行为是由多种生理因素介导的。但是,将传导性K(+)通道的内衬羰基的结合位点视为规范的八重配位结构可能有助于理解使通道结构与其功能相关的原理。我们探讨了结构和化学成分对K(+)/ Na(+)选择性的影响,这些选择性是由各种简化的液滴状离子结合位点模型提供的。我们发现,当基于羰基和水的模型捕获K(+)通道结合位点的定性结构特征时,出现了对K(+)的选择性偏爱。因此,我们的发现表明,这种模型所表现出的相对于Na(+)而言,对K(+)的偏好主要是内置的,而不是由于羰基官能团具有独特的K(+)选择性。一般热力学评估证实了这一建议,该评估为使用简化模型研究K(+)通道分子演化的设计原理提供了基础。

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