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由正常模式计算产生的蛋白质构象变化。

Conformational change of proteins arising from normal mode calculations.

作者信息

Tama F, Sanejouand Y H

机构信息

Laboratoire de Physique Quantique, UMR 5626 of CNRS, IRSAMC, Université Paul Sabatier, 118 route de Narbonne, 31062 Toulouse Cedex, France.

出版信息

Protein Eng. 2001 Jan;14(1):1-6. doi: 10.1093/protein/14.1.1.

Abstract

A normal mode analysis of 20 proteins in 'open' or 'closed' forms was performed using simple potential and protein models. The quality of the results was found to depend upon the form of the protein studied, normal modes obtained with the open form of a given protein comparing better with the conformational change than those obtained with the closed form. Moreover, when the motion of the protein is a highly collective one, then, in all cases considered, there is a single low-frequency normal mode whose direction compares well with the conformational change. When it is not, in most cases there is still a single low-frequency normal mode giving a good description of the pattern of the atomic displacements, as they are observed experimentally during the conformational change. Hence a lot of information on the nature of the conformational change of a protein is often found in a single low-frequency normal mode of its open form. Since this information can be obtained through the normal mode analysis of a model as simple as that used in the present study, it is likely that the property captured by such an analysis is for the most part a property of the shape of the protein itself. One of the points that has to be clarified now is whether or not amino acid sequences have been selected in order to allow proteins to follow a single normal mode direction, as least at the very beginning of their conformational change.

摘要

使用简单势函数和蛋白质模型对20种处于“开放”或“封闭”形式的蛋白质进行了正常模式分析。结果质量取决于所研究蛋白质的形式,给定蛋白质开放形式获得的正常模式与构象变化的匹配度比封闭形式获得的更好。此外,当蛋白质的运动是高度集体性的时,在所考虑的所有情况下,都存在一个单一的低频正常模式,其方向与构象变化匹配良好。当不是这种情况时,在大多数情况下仍然存在一个单一的低频正常模式,能够很好地描述构象变化过程中实验观察到的原子位移模式。因此,关于蛋白质构象变化本质的许多信息通常可以在其开放形式的单一低频正常模式中找到。由于可以通过像本研究中使用的那样简单的模型的正常模式分析来获得这些信息,很可能这种分析所捕捉到的性质在很大程度上是蛋白质本身形状的性质。现在必须澄清的一点是,是否选择了氨基酸序列以便蛋白质至少在构象变化的最初阶段遵循单一的正常模式方向。

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