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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Constant electric field simulations of the membrane potential illustrated with simple systems
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Constant electric field simulations of the membrane potential illustrated with simple systems

机译:用简单的系统说明膜电位的恒定电场模拟

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Advances in modern computational methods and technology make it possible to carry out extensive molecular dynamics simulations of complex membrane proteins based on detailed atomic models. The ultimate goal of such detailed simulations is to produce trajectories in which the behavior of the system is as realistic as possible. A critical aspect that requires consideration in the case of biological membrane systems is the existence of a net electric potential difference across the membrane. For meaningful computations, it is important to have well validated methodologies for incorporating the latter in molecular dynamics simulations. A widely used treatment of the membrane potential in molecular dynamics consists of applying an external uniform electric field E perpendicular to the membrane. The field acts on all charged particles throughout the simulated system, and the resulting applied membrane potential V is equal to the applied electric field times the length of the periodic cell in the direction perpendicular to the membrane. A series of test simulations based on simple membrane-slab models are carried out to clarify the consequences of the applied field. These illustrative tests demonstrate that the constant-field method is a simple and valid approach for accounting for the membrane potential in molecular dynamics studies of biomolecular systems. This article is part of a Special Issue entitled: Membrane protein structure and function.
机译:现代计算方法和技术的进步使得可以基于详细的原子模型对复杂的膜蛋白进行广泛的分子动力学模拟。这种详细模拟的最终目标是产生轨迹,使系统的行为尽可能真实。在生物膜系统的情况下需要考虑的一个关键方面是跨膜存在净电势差。对于有意义的计算,重要的是要有经过验证的方法来将后者纳入分子动力学模拟。在分子动力学中广泛使用的膜电位处理方法是施加垂直于膜的外部均匀电场E。该场作用在整个模拟系统上的所有带电粒子上,所产生的施加的膜电位V等于所施加的电场乘以垂直于膜的方向上周期电池的长度。进行了一系列基于简单膜板模型的测试模拟,以阐明应用领域的后果。这些说明性测试证明,恒定场方法是一种在生物分子系统的分子动力学研究中考虑膜电位的简单有效方法。本文是名为“膜蛋白结构和功能”的特刊的一部分。

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