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Selectivity sequences in a model calcium channel: Role of electrostatic field strength

机译:模型钙通道中的选择性序列:静电场强度的作用

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摘要

The energetics that give rise to selectivity sequences of ionic binding selectivity of Li+, Na+, K+, Rb+, and Cs+ in a model of a calcium channel are considered. This work generalizes Eisenman's classic treatment (Biophys J 2(Suppl. 2):259, 1962) by including multiple, mobile binding site oxygens that coordinate many permeating ions (all modeled as charged, hard spheres). The selectivity filter of the model calcium channel allows the carboxyl terminal groups of glutamate and aspartate side chains to directly interact with and coordinate the permeating ions. Ion dehydration effects are represented with a Born energy between the dielectric coefficients of the selectivity filter and the bath. High oxygen concentration creates a high field strength site that prefers small ions, as in Eisenman's model. On the other hand, a low filter dielectric constant also creates a high field strength site, but this site prefers large ions, contrary to Eisenman's model. These results indicate that field strength does not have a unique effect on ionic binding selectivity sequences once entropic, electrostatic, and dehydration forces are included in the model. Thus, Eisenman's classic relationship between field strength and selectivity sequences must be supplemented with additional information about selectivity filters such as the calcium channel that has amino acid side chains mixing with ions to make a crowded permeation pathway.
机译:考虑在钙通道模型中产生Li +,Na +,K +,Rb +和Cs +的离子结合选择性的选择性序列的高能学。这项工作概括了艾森曼的经典疗法(Biophys J 2(Suppl。2):259,1962),包括了多个可移动的结合位点氧,这些氧可协调许多渗透离子(均建模为带电的硬球体)。模型钙通道的选择性过滤器允许谷氨酸和天冬氨酸侧链的羧基末端基团直接与渗透离子相互作用并协调渗透离子。离子脱水效应用选择性过滤器和镀液介电系数之间的Born能量表示。像艾森曼的模型一样,高浓度的氧气会产生一个高电场强度的位点,该位点倾向于使用小离子。另一方面,低的滤波器介电常数也会产生较高的场强位点,但与艾森曼模型相反,该位点更喜欢大离子。这些结果表明,一旦将熵力,静电力和脱水力包括在模型中,场强就不会对离子结合选择性序列产生独特的影响。因此,必须用有关选择性过滤器的其他信息来补充艾森曼在场强和选择性序列之间的经典关系,例如钙通道具有与离子混合的氨基酸侧链以形成拥挤的渗透途径。

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