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Ion Concentration- and Voltage-Dependent Push and Pull Mechanisms of Potassium Channel Ion Conduction

机译:钾离子通道离子传导的离子浓度和电压依赖性推挽机制

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摘要

The mechanism of ion conduction by potassium channels is one of the central issues in physiology. In particular, it is still unclear how the ion concentration and the membrane voltage drive ion conduction. We have investigated the dynamics of the ion conduction processes in the Kv1.2 pore domain, by molecular dynamics (MD) simulations with several different voltages and ion concentrations. By focusing on the detailed ion movements through the pore including selectivity filter (SF) and cavity, we found two major conduction mechanisms, called the III-IV-III and III-II-III mechanisms, and the balance between the ion concentration and the voltage determines the mechanism preference. In the III-IV-III mechanism, the outermost ion in the pore is pushed out by a new ion coming from the intracellular fluid, and four-ion states were transiently observed. In the III-II-III mechanism, the outermost ion is pulled out first, without pushing by incoming ions. Increases in the ion concentration and voltage accelerated ion conductions, but their mechanisms were different. The increase in the ion concentrations facilitated the III-IV-III conductions, while the higher voltages increased the III-II-III conductions, indicating that the pore domain of potassium channels permeates ions by using two different driving forces: a push by intracellular ions and a pull by voltage.
机译:钾离子通道的离子传导机制是生理学的中心问题之一。特别地,仍不清楚离子浓度和膜电压如何驱动离子传导。我们已经通过分子动力学(MD)模拟在几种不同的电压和离子浓度下研究了Kv1.2孔域中离子传导过程的动力学。通过关注离子在包括选择性过滤器(SF)和空腔在内的孔中的详细运动,我们发现了两种主要的传导机理,分别称为III-IV-III和III-II-III机理,以及离子浓度和离子浓度之间的平衡。电压决定机制的偏好。在III-IV-III机理中,孔中最外层的离子被来自细胞内液的新离子推出,并短暂观察到四离子状态。在III-II-III机制中,最外面的离子首先被拉出,而不会被进入的离子推动。离子浓度和电压的增加加速了离子传导,但是它们的机理不同。离子浓度的增加促进了III-IV-III的传导,而较高的电压则增加了III-II-III的传导,这表明钾通道的孔结构域通过两种不同的驱动力渗透到离子中:细胞内离子推动和电压拉

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