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Simultaneous determination of protein structure and dynamics

机译:同时测定蛋白质的结构和动力学

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We present a protocol for the experimental determination of ensembles of protein conformations that represent simultaneously the native structure and its associated dynamics. The procedure combines the strengths of nuclear magnetic resonance spectroscopy—for obtaining experimental information at the atomic level about the structural and dynamical features of proteins—with the ability of molecular dynamics simulations to explore a wide range of protein conformations. We illustrate the method for human ubiquitin in solution and find that there is considerable conformational heterogeneity throughout the protein structure. The interior atoms of the protein are tightly packed in each individual conformation that contributes to the ensemble but their overall behaviour can be described as having a significant degree of liquid-like character. The protocol is completely general and should lead to significant advances in our ability to understand and utilize the structures of native proteins.
机译:我们提出了一种协议,可以同时确定天然结构及其相关动力学的蛋白质构象的集成度。该程序结合了核磁共振波谱的优势(用于在原子级获得有关蛋白质的结构和动力学特征的实验信息)以及分子动力学模拟能力,以探索多种蛋白质构象。我们举例说明了溶液中人遍在蛋白的方法,发现整个蛋白质结构中存在相当大的构象异质性。蛋白质的内部原子紧密地堆积在有助于形成整体的每个单独构象中,但是它们的整体行为可以描述为具有显着程度的液体状特征。该协议是完全通用的,应该会在我们理解和利用天然蛋白质结构的能力方面取得重大进展。

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