Guardiani Carlo, Rodger P Mark, Fedorenko Olena A, Roberts Stephen K, Khovanov Igor A
Division of Biomedical and Life Sciences, Lancaster University , Lancaster, United Kingdom.
J Chem Theory Comput. 2017 Mar 14;13(3):1389-1400. doi: 10.1021/acs.jctc.6b01035. Epub 2017 Feb 9.
NaChBac was the first discovered bacterial sodium voltage-dependent channel, yet computational studies are still limited due to the lack of a crystal structure. In this work, a pore-only construct built using the NavMs template was investigated using unbiased molecular dynamics and metadynamics. The potential of mean force (PMF) from the unbiased run features four minima, three of which correspond to sites IN, CEN, and HFS discovered in NavAb. During the run, the selectivity filter (SF) is spontaneously occupied by two ions, and frequent access of a third one is often observed. In the innermost sites IN and CEN, Na is fully hydrated by six water molecules and occupies an on-axis position. In site HFS sodium interacts with a glutamate and a serine from the same subunit and is forced to adopt an off-axis placement. Metadynamics simulations biasing one and two ions show an energy barrier in the SF that prevents single-ion permeation. An analysis of the permeation mechanism was performed both computing minimum energy paths in the axial-axial PMF and through a combination of Markov state modeling and transition path theory. Both approaches reveal a knock-on mechanism involving at least two but possibly three ions. The currents predicted from the unbiased simulation using linear response theory are in excellent agreement with single-channel patch-clamp recordings.
NaChBac是首个被发现的细菌钠电压依赖性通道,但由于缺乏晶体结构,其计算研究仍然有限。在这项工作中,使用NavMs模板构建的仅含孔道的结构通过无偏分子动力学和元动力学进行了研究。无偏运行产生的平均力势(PMF)有四个最小值,其中三个对应于在NavAb中发现的IN、CEN和HFS位点。在运行过程中,选择性过滤器(SF)会自发地被两个离子占据,并且经常观察到第三个离子的频繁进入。在最内部的IN和CEN位点,钠被六个水分子完全水化,并占据轴向位置。在HFS位点,钠与来自同一亚基的一个谷氨酸和一个丝氨酸相互作用,并被迫采取离轴位置。对一个和两个离子进行偏向的元动力学模拟显示,SF中存在一个能量屏障,可阻止单离子渗透。通过计算轴向-轴向PMF中的最小能量路径以及结合马尔可夫状态建模和过渡路径理论,对渗透机制进行了分析。两种方法都揭示了一种涉及至少两个但可能三个离子的连锁机制。使用线性响应理论从无偏模拟预测的电流与单通道膜片钳记录结果非常吻合。