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水通道蛋白的分子模拟研究中的选择性和传输。

Selectivity and transport in aquaporins from molecular simulation studies.

机构信息

TCS Innovation Labs-Hyderabad (Life Sciences Division), Tata Consultancy Services Limited, Hyderabad, India.

Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology, Hyderabad, India.

出版信息

Vitam Horm. 2020;112:47-70. doi: 10.1016/bs.vh.2019.10.001. Epub 2019 Dec 4.

Abstract

The transport of water through aquaporins is a dynamic process that involves rapid movement of a chain of water molecules through the pore of the aquaporin. Structures of aquaporins solved using X-ray crystallography have provided some insights into how water is transported through these channels, and how certain structural features of the pore might help exclude other solutes from passing through the pore. However, such techniques provide only a static picture, and a dynamic picture of the transport and selectivity mechanism at work in aquaporins is possible with molecular dynamics (MD) simulations. In MD simulations, the forces between the different atoms in a system are computed, and the atoms are then allowed to move under the influence of these forces. This allows the sampling of different conformations of the molecule being studied, including conformations that are crucial in driving biological phenomena like water transport. Simulation studies have provided insights into a number of aspects of aquaporins, including the role of the asparagine-proline-alanine (NPA) motif and the aromatic/arginine (ar/R) constriction, water transport mechanism, mechanisms defining the selectivity of the channel, interaction with lipids, response to external electric field, and binding of putative drug molecules. This chapter provides a brief review of the current status of computational modeling of aquaporins using MD simulations. Initially, a brief account of force fields and MD simulations is presented followed by an account of how MD simulations have contributed to further our understanding of different aspects of aquaporins.

摘要

水通过水通道蛋白的运输是一个动态过程,涉及水分子通过水通道蛋白的孔快速移动。使用 X 射线晶体学解决的水通道蛋白结构为我们提供了一些关于水如何通过这些通道运输以及孔的某些结构特征如何有助于阻止其他溶质通过孔的见解。然而,这些技术仅提供静态图像,而通过分子动力学 (MD) 模拟可以获得水通道蛋白中运输和选择性机制的动态图像。在 MD 模拟中,计算系统中不同原子之间的力,然后允许原子在这些力的影响下移动。这允许对所研究分子的不同构象进行采样,包括在驱动水运输等生物现象中至关重要的构象。模拟研究提供了对水通道蛋白的许多方面的深入了解,包括天冬酰胺-脯氨酸-丙氨酸 (NPA) 基序和芳香族/精氨酸 (ar/R) 限制、水运输机制、定义通道选择性的机制、与脂质的相互作用、对外电场的响应以及假定药物分子的结合。本章简要回顾了使用 MD 模拟进行水通道蛋白计算建模的现状。最初,简要介绍了力场和 MD 模拟,然后介绍了 MD 模拟如何有助于进一步了解水通道蛋白的不同方面。

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