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Probing the folding of mini-protein Beta3s by two-dimensional infrared spectroscopy; simulation study

机译:通过二维红外光谱法研究微型蛋白质Beta3的折叠;模拟研究

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摘要

We propose to use infrared coherent two-dimensional correlation spectroscopy (2DCS) to characterize the folding mechanism of the mini-protein Beta3s. In this study Beta3s was folded by molecular dynamics (MD) simulation and intermediate conformational ensembles were identified. The one and two-dimensional correlation spectrum was calculated for the intermediate and native states of the mini-protein. A direct structure-spectra relationship was determined by analysis of conformational properties and specific residue contributions. We identified the structural origin of diagonal and off-diagonal peaks in the 2DCS spectra for the native and intermediate conformational ensembles in the folding mechanism. This work supports the implementation of computational techniques in conjunction with experimental 2DCS to study the folding mechanism of proteins. In addition to exploring the folding mechanism the work presented here can be applied in combination with experiment to refine and validate current molecular dynamics force fields.>PACS Codes: 87.15.Cc, 87.15.hm, 87.15.hp
机译:我们建议使用红外相干二维相关光谱(2DCS)来表征微型蛋白Beta3s的折叠机制。在这项研究中,通过分子动力学(MD)模拟折叠了Beta3s,并鉴定了中间构象集合。计算了微蛋白的中间状态和天然状态的一维和二维相关光谱。通过分析构象性质和特定的残基贡献来确定直接的结构-光谱关系。我们确定了折叠机制中的天然和中间构象集合在2DCS光谱中对角和非对角峰的结构起源。这项工作支持结合实验2DCS来研究蛋白质折叠机制的计算技术的实现。除了探索折叠机制之外,此处介绍的工作还可与实验结合使用,以完善和验证当前​​的分子动力学力场。> PACS代码: 87.15.Cc,87.15.hm,87.15.hp

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