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惰性溶质的空间填充效应作为通过酶动力学检测和研究底物介导的构象变化的探针:理论考量

Space-filling effects of inert solutes as probes for the detection and study of substrate-mediated conformational changes by enzyme kinetics: theoretical considerations.

作者信息

Bergman D A, Winzor D J

机构信息

Department of Biochemistry, University of Queensland, St. Lucia, Australia.

出版信息

J Theor Biol. 1989 Mar 21;137(2):171-89. doi: 10.1016/s0022-5193(89)80204-8.

Abstract

From expressions derived for the space-filling effects of small inert solutes on kinetic parameters for univalent enzymes undergoing isomerizations that are substrate-induced and pre-existing, it is concluded that experimental observation of an enhanced maximal velocity in the presence of inert solute can only reflect the existence of the former type of conformational change; and that the isomerization must be governed by a relatively small equilibrium constant. Similar conclusions apply to multivalent enzymes exhibiting Michaelis-Menten kinetics. Extension of the theory to provide quantitative expressions for multivalent enzymes has made possible the numerical simulation of thermodynamic non-ideality effects on systems conforming with the Monod and Koshland models of allostery. In that regard the simulated Scatchard plots for the two models differ sufficiently in form to suggest that detailed examination of the space-filling effects of small solutes on the kinetics of an allosteric enzyme may, under favourable circumstances, allow identification of the appropriate allosteric mechanism. Finally, these considerations of thermodynamic non-ideality in relation to the kinetics of allosteric enzymes have revealed formal similarities between the consequences of space-filling by inert solutes and the specific effects of allosteric activators or inhibitors. Attention is drawn to the possible implications of this observation in relation to the functioning of allosteric enzymes in vivo, where catalytic performance may be modified by factors no more specific than the ability of unrelated solutes to occupy space in the highly concentrated cellular environment.

摘要

从小的惰性溶质对经历底物诱导和预先存在的异构化的单价酶动力学参数的空间填充效应所推导的表达式可以得出结论,在惰性溶质存在下最大速度增强的实验观察结果只能反映前一种构象变化的存在;并且异构化必须由相对较小的平衡常数控制。类似的结论适用于表现出米氏动力学的多价酶。将该理论扩展以提供多价酶的定量表达式,使得对符合别构作用的莫诺德和科什兰德模型的系统进行热力学非理想效应的数值模拟成为可能。在这方面,两种模型的模拟斯卡查德图在形式上有足够的差异,表明在有利的情况下,详细研究小溶质对别构酶动力学的空间填充效应可能有助于确定合适的别构机制。最后,这些关于别构酶动力学的热力学非理想性的考虑揭示了惰性溶质的空间填充后果与别构激活剂或抑制剂的特定效应之间的形式相似性。请注意这一观察结果对体内别构酶功能的可能影响,在体内,催化性能可能会受到一些因素的影响,这些因素并不比无关溶质在高度浓缩的细胞环境中占据空间的能力更具特异性。

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