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布朗动力学模拟酶在反胶束内部活性部位附近的底物运动。

Brownian dynamics simulation of substrate motion near active site of enzyme entrapped inside reverse micelle.

机构信息

Kazan Institute of Biochemistry and Biophysics RAS, Russia.

出版信息

Eur Biophys J. 2010 Aug;39(9):1335-41. doi: 10.1007/s00249-010-0586-y. Epub 2010 Mar 5.

Abstract

Brownian dynamics simulation has been applied to analyze the influence of the electrostatic field of a reverse micelle on the enzyme-substrate complex formation inside a micelle. The probability that the enzyme-substrate complex will form from serine protease (trypsin) and the specific hydrophilic cationic substrate Nalpha-benzoyl-L: -arginine ethyl ester has been studied within the framework of the encounter complex formation theory. It has been shown that surfactant charge, dipole moments created by charged surfactant molecules and counterions, and permittivity of the inner core of reverse micelles can all be used as regulatory parameters to alter the substrate orientation near the active site of the enzyme and to change the probability that the enzyme-substrate complex will form.

摘要

布朗动力学模拟已被应用于分析反胶束静电场对胶束内酶-底物复合物形成的影响。在碰撞复合物形成理论框架内,研究了丝氨酸蛋白酶(胰蛋白酶)和特定的亲水性阳离子底物 Nalpha-苯甲酰-L: -精氨酸乙酯在胶束内形成酶-底物复合物的概率。结果表明,表面活性剂的电荷、带电荷的表面活性剂分子和反离子产生的偶极矩以及反胶束内核的介电常数都可以用作调节参数,改变底物在酶活性部位附近的取向,并改变酶-底物复合物形成的概率。

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