Turchenkov Dmitry A, Bystrov Vladimir S
BioSim Research Group , Moscow, Russia.
J Phys Chem B. 2014 Aug 7;118(31):9119-27. doi: 10.1021/jp501177d. Epub 2014 Jul 23.
This paper investigates the application of an original combined approach of molecular and Brownian dynamic methods with quantum chemistry calculations for modeling the process of conductance of ion channels using purinergic P2X family receptors P2X2, P2X4, and P2X7 as a case study. A simplified model of the ionic channel in the lipid bilayer has been developed. A high level of conductance (30 pS) of P2X2 ionic channel together with the key role of Asp349 in forming the selectivity filter of P2X2 has been shown by using this approach. Calculated P2X2 permeability to monovalent cations Li(+), Na(+), and K(+) conforms to the free diffusion coefficient of these ions, which shows the low selectivity of P2X2 ionic channel.
本文以嘌呤能P2X家族受体P2X2、P2X4和P2X7为例,研究了分子动力学和布朗动力学方法与量子化学计算相结合的原创方法在离子通道电导过程建模中的应用。已开发出脂质双分子层中离子通道的简化模型。通过使用该方法,已证明P2X2离子通道具有高水平的电导(30 pS)以及Asp349在形成P2X2选择性过滤器中的关键作用。计算得出的P2X2对单价阳离子Li(+)、Na(+)和K(+)的渗透率与这些离子的自由扩散系数相符,这表明P2X2离子通道的选择性较低。