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A Continuum Poisson-Boltzmann Model for Membrane Channel Proteins

机译:用于膜通道蛋白的连续泊泊松 - Boltzmann模型

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Membrane proteins constitute a large portion of the human proteome and perform a variety of important functions as membrane receptors, transport proteins, enzymes, signaling proteins, and more. Computational studies of membrane proteins are usually much more complicated than those of globular proteins. Here, we propose a new continuum model for Poisson-Boltzmann calculations of membrane channel proteins. Major improvements over the existing continuum slab model are as follows: (1) The location and thickness of the slab model are fine-tuned based on explicit solvent MD simulations. (2) The highly different accessibilities in the membrane and water regions are addressed with a two-step, two-probe grid-labeling procedure. (3) The water pores/channels are automatically identified. The new continuum membrane model is optimized (by adjusting the membrane probe, as well as the slab thickness and center) to best reproduce the distributions of buried water molecules in the membrane region as sampled in explicit water simulations. Our optimization also shows that the widely adopted water probe of 1.4 angstrom for globular proteins is a very reasonable default value for membrane protein simulations. It gives the best compromise in reproducing the explicit water distributions in membrane channel proteins, at least in the water accessible pore/channel regions. Finally, we validate the new membrane model by carrying out binding affinity calculations for a potassium channel, and we observe good agreement with the experimental results.
机译:膜蛋白是人类蛋白质组的重要组成部分,具有膜受体、转运蛋白、酶、信号蛋白等多种重要功能。膜蛋白的计算研究通常比球状蛋白的计算研究复杂得多。在这里,我们提出了一个新的连续介质模型,用于膜通道蛋白的泊松-玻尔兹曼计算。对现有连续介质平板模型的主要改进如下:(1)基于显式溶剂MD模拟对平板模型的位置和厚度进行了微调。(2) 膜和水区域的可及性差异很大,可通过两步、两探针网格标记程序解决。(3) 水孔/通道会自动识别。对新的连续膜模型进行了优化(通过调整膜探头、板厚度和中心),以最好地再现显式水模拟中采样的膜区域中埋藏水分子的分布。我们的优化还表明,广泛采用的1.4埃球形蛋白质水探针是膜蛋白模拟的一个非常合理的默认值。它在复制膜通道蛋白质中的显式水分布方面提供了最佳折衷方案,至少在水可到达的孔/通道区域。最后,我们通过对钾通道进行结合亲和力计算来验证新的膜模型,并且我们观察到与实验结果很好的一致性。

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