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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Bunching Effect in Single-Molecule T4 Lysozyme Nonequilibrium Conformational Dynamics under Enzymatic Reactions
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Bunching Effect in Single-Molecule T4 Lysozyme Nonequilibrium Conformational Dynamics under Enzymatic Reactions

机译:酶反应下单分子T4溶菌酶非平衡构象动力学的聚束效应

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摘要

The bunching effect, implying that conformational motion times tend to bunch in a finite and narrow time window, is observed and identified to be associated with substrate—enzyme complex formation in T4 lysozyme conformational dynamics under enzymatic reactions. Using single-molecule fluorescence spectroscopy, we have probed T4 lysozyme conformational motions under the hydrolysis reaction of polysaccharide of E. coli B cell walls by monitoring the fluorescence resonant energy transfer (FRET) between a donor—acceptor probe pair tethered to T4 lysozyme domains involving open—close hinge-bending motions. On the basis of the single-molecule spectroscopic results, molecular dynamics simulation, and a random walk model analysis, multiple intermediate states have been estimated in the evolution of T4 lysozyme enzymatic reaction active complex formation (Chen, Y.; Hu, D.; Vorpagel, E. R.; Lu, H. P. Probing single-molecule T4 lysozyme conformational dynamics by intramolecular fluorescence energy transfer. J. Phys. Chem. B 2003, 107, 7947-7956). In this Article, we report progress on the analysis of the reported experimental results, and we have identified the bunching effect of the substrate—enzyme active complex formation time in T4 lysozyme enzymatic reactions. We show that the bunching effect, a dynamic behavior observed for the catalytic hinge-bending conformational motions of T4 lysozyme, is a convoluted outcome of multiple consecutive Poisson rate processes that are defined by protein functional motions under substrate—enzynie interactions; i.e., convoluted multiple Poisson rate processes give rise to the bunching effect in the enzymatic reaction dynamics. We suggest that the bunching effect is likely common in protein conformational dynamics involved in conformation-gated protein functions.
机译:聚集效应,表明构象运动时间倾向于在有限和狭窄的时间窗口内聚集,并被观察到与酶反应下T4溶菌酶构象动力学中的底物-酶复合物形成有关。使用单分子荧光光谱,我们通过监测供体-受体探针对之间的荧光共振能量转移(FRET)拴在涉及T4溶菌酶结构域的荧光共振能量转移(FRET),在大肠杆菌B细胞壁多糖水解反应下探测了T4溶菌酶的构象运动。打开-关闭铰链弯曲运动。根据单分子光谱结果,分子动力学模拟和随机游走模型分析,在T4溶菌酶反应活性复合物的形成过程中,估计了多个中间状态(Chen,Y .; Hu,D .; Vorpagel,ER; Lu,HP通过分子内荧光能量转移探测单分子T4溶菌酶构象动力学(J.Phys.Chem.B 2003,107,7947-7956)。在本文中,我们报告了对所报告的实验结果进行分析的进展,并且我们确定了底物的聚集效应-T4溶菌酶反应中的酶活性复合物形成时间。我们显示,聚集效应是一种观察到的T4溶菌酶催化铰链弯曲构象运动的动态行为,是由基质-酶相互作用下蛋白质功能运动定义的多个连续泊松速率过程的复杂结果。即,卷积的多个泊松速率过程引起了酶反应动力学中的聚集效应。我们建议聚集效应可能在参与构象门控蛋白功能的蛋白构象动力学中很常见。

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