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受体层对速率常数测量的影响。

The effect of a receptor layer on the measurement of rate constants.

作者信息

Edwards D A

机构信息

Department of Mathematical Sciences, University of Delaware, Newark, DE 19716-2553, USA.

出版信息

Bull Math Biol. 2001 Mar;63(2):301-27. doi: 10.1006/bulm.2000.0224.

Abstract

Many cellular reactions involve a reactant in solution binding to or dissociating from a reactant attached to a surface. Most studies assume that the reactions occur on this surface, when in actuality the receptors usually lie in a thin layer on top of it. The effect of this layer is considered, particularly as it relates to the BIAcore measurement device, though the results are applicable to biological systems. A dimensionless parameter measuring the strength of the effect of the receptor layer is found. Asymptotic and singular perturbation techniques are used to analyse association and dissociation kinetics, though the effect of the receptor layer need not be small. Linear and nonlinear integral equations result from the analysis; explicit and asymptotic solutions are constructed for physically realizable cases. In addition, effective rate constants are derived that illustrate the combined effects of transport and the receptor layer on the measured rate constants. All these expressions provide a direct way to estimate rate constants from BIAcore binding data.

摘要

许多细胞反应涉及溶液中的反应物与附着在表面的反应物结合或解离。大多数研究假定反应发生在该表面上,而实际上受体通常位于其上方的薄层中。考虑了该层的影响,特别是与BIAcore测量装置相关的影响,尽管结果适用于生物系统。找到了一个测量受体层效应强度的无量纲参数。使用渐近和奇异摄动技术来分析缔合和解离动力学,尽管受体层的效应不一定很小。分析产生了线性和非线性积分方程;针对物理上可实现的情况构建了显式和渐近解。此外,还推导了有效速率常数,以说明传输和受体层对测量速率常数的综合影响。所有这些表达式都提供了一种直接从BIAcore结合数据估计速率常数的方法。

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