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Modeling complex biological systems: From solution chemistry to membranes and channels

机译:建模复杂的生物系统:从溶液化学到膜和通道

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Complex biological systems are intimately linked to their environment, a very crowded and equally complex solution compartmentalized by fluid membranes. Modeling such systems remains challenging and requires a suitable representation of these solutions and their interfaces. Here, we focus on particle-based modeling at an atomistic level using molecular dynamics (MD) simulations. As an example, we discuss important steps in modeling the solution chemistry of an ion channel of the ligand-gated ion channel receptor family, a major target of many drugs including anesthetics and addiction treatments. The bacterial pentameric ligand-gated ion channel (pLGIC) called GLIC provides clues about the functional importance of solvation, in particular for mechanisms such as permeation and gating. We present some current challenges along with promising novel modeling approaches.
机译:复杂的生物系统与其周围环境紧密相连,这是一种非常拥挤且同样复杂的溶液,被液膜分隔。对此类系统进行建模仍然具有挑战性,并且需要这些解决方案及其接口的适当表示。在这里,我们专注于使用分子动力学(MD)模拟的原子级基于粒子的建模。例如,我们讨论了对配体门控离子通道受体家族的离子通道溶液化学建模的重要步骤,这是许多药物(包括麻醉药和成瘾疗法)的主要目标。称为GLIC的细菌五聚体配体门控离子通道(pLGIC)提供了有关溶剂化功能重要性的线索,特别是对于渗透和门控等机制。我们提出了一些当前的挑战以及有希望的新颖建模方法。

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