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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Assessing the Accuracy of Different Solvation Models To Describe Protein Adsorption
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Assessing the Accuracy of Different Solvation Models To Describe Protein Adsorption

机译:评估不同溶剂化模型的准确性,以描述蛋白质吸附

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In protein adsorption, the surrounding solvent has an important role in mediating protein-surface interactions. Therefore, it is of paramount importance that the solvent methods employed to model these kinds of processes are able to correctly capture the complex mechanisms occurring in the protein-water-surface interface. Here, we test the suitability of the two most popular implicit solvent methods based on the Generalized Born formalism to describe the adsorption process of the immunoglobulin G (IgG) on a hydrophobic graphene surface. Our results show that in both cases, IgG experiences an extreme and early (in less than 40 ns) unfolding as a result of the adsorption to the surface in contrast with previous experimental findings. A detailed energy decomposition analysis of explicit and implicit solvent simulations reveals that this discrepancy arises from the ill-characterization of two energy components in implicit solvent methods. These findings help to elucidate how implicit solvent models may be improved to accurately characterize the protein adsorption process.
机译:在蛋白质吸附中,周围溶剂在介导蛋白质 - 表面相互作用方面具有重要作用。因此,它至关重要的是,用于模拟这些种类的方法的溶剂方法能够正确地捕获在蛋白水面界面中发生的复杂机制。在这里,我们基于广义的出生形式主义来测试两个最流行的隐式溶剂方法的适用性,以描述免疫球蛋白G(IgG)对疏水石墨烯表面的吸附过程。我们的研究结果表明,在两种情况下,由于与之前的实验结果相比,IgG在对比表面的吸附导致的情况下,IgG在表面上吸附了极端和早期(在不到40毫秒)。明确和隐性溶剂模拟的详细能量分解分析表明,这种差异是由于隐含溶剂方法中的两个能量分量的异常表征而产生的。这些发现有助于阐明可以改善隐性溶剂模型,以准确地表征蛋白质吸附过程。

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