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Strontium and barium in aqueous solution and a potassium channel binding site

机译:锶和水溶液中的钡和钾通道结合位点

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Ion hydration structure and free energy establish criteria for understanding selective ion binding in potassium (K+) ion channels and may be significant to understanding blocking mechanisms as well. Recently, we investigated the hydration properties of Ba2+, the most potent blocker of K+ channels among the simple metal ions. Here, we use a similar method of combining ab initio molecular dynamics simulations, statistical mechanical theory, and electronic structure calculations to probe the fundamental hydration properties of Sr2+, which does not block bacterial K+ channels. The radial distribution of water around Sr2+ suggests a stable 8-fold geometry in the local hydration environment, similar to Ba2+. While the predicted hydration free energy of -331.8 kcal/mol is comparable with the experimental result of -334 kcal/mol, the value is significantly more favorable than the -305 kcal/mol hydration free energy of Ba2+. When placed in the innermost K+ channel blocking site, the solvation free energies and lowest energy structures of both Sr2+ and Ba2+ are nearly unchanged compared with their respective hydration properties. This result suggests that the block is not attributable to ion trapping due to +2 charge, and differences in blocking behavior arise due to free energies associated with the exchange of water ligands for channel ligands instead of free energies of transfer from water to the binding site. Published by AIP Publishing.
机译:离子水合结构和自由能建立标准对于理解选择性离​​子在钾结合(K +)离子通道,并且可以是对理解阻断机制以及显著。最近,我们调查的Ba 2+,简单的金属离子之间的K +通道的最有力的阻断剂的水合性能。在这里,我们使用了类似的从头计算分子动力学模拟,统计力学理论,和电子结构计算组合AB探测SR2 +,这不会阻止细菌K +通道的基本水合性质的方法。的水周围的Sr 2+的径向分布表明在本地水合环境稳定的8倍的几何形状,类似于至Ba2 +。虽然-331.8千卡/摩尔的预测水合自由能是用的实验结果相媲美-334千卡/摩尔,该值是显著比-305千卡/摩尔水合游离的Ba 2+的能量更有利的。当放置在最里面的K +通道阻断位点,溶剂化自由能和两个SR2 2+和Ba +的最低能量结构几乎不变与它们各自的水合性质进行比较。这一结果表明,该块不是归因于离子捕捉由于2电荷,并在封闭行为差异的出现是由于与水的配体用于信道的交换相关联的自由能,而不是配体的转移自由能从水到结合位点。通过AIP发布发布。

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