变构调节
不相关
相关性
分子动力学
蛋白质动力学
代表(政治)
计算生物学
互相关
生物系统
统计物理学
计算机科学
化学
酶
物理
数学
计算化学
生物
统计
几何学
数学分析
政治
生物化学
法学
政治学
作者
Haoran Yu,Paul A. Dalby
出处
期刊:Methods in Enzymology
日期:2020-01-01
卷期号:: 15-49
被引量:33
标识
DOI:10.1016/bs.mie.2020.04.020
摘要
The functional properties of proteins are decided not only by their relatively rigid overall structures, but even more importantly, by their dynamic properties. In a protein, some regions of structure exhibit highly correlated or anti-correlated motions with others, some are highly dynamic but uncorrelated, while other regions are relatively static. The residues with correlated or anti-correlated motions can form a so-called dynamic cross-correlation network, through which information can be transmitted. Such networks have been shown to be critical to allosteric transitions, and ligand binding, and have also been shown to be able to mediate epistatic interactions between mutations. As a result, they are likely to play a significant role in the development of new enzyme engineering strategies. In this chapter, protocols are provided for the assessment of dynamic cross-correlation networks, and for their application in protein engineering. Transketolase from E. coli is used as a model and the software GROMACS is applied for carrying out MD simulations to generate trajectories containing structural ensembles. The trajectory is then used for a dynamic cross correlation analysis using the R package, Bio3D. A matrix of all atom-wise cross-correlation coefficients is finally obtained, which can be displayed in a graphical representation termed a dynamical cross-correlation matrix.
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