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利用全内反射荧光光漂白恢复技术测量二价表面结合动力学的理论。

Theory for measuring bivalent surface binding kinetics using total internal reflection with fluorescence photobleaching recovery.

作者信息

Hsieh H V, Thompson N L

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill 27599-3290.

出版信息

Biophys J. 1994 Mar;66(3 Pt 1):898-911. doi: 10.1016/s0006-3495(94)80866-5.

Abstract

Total internal reflection with fluorescence photobleaching recovery (TIR-FPR) is a method for experimentally examining coupled diffusion and reaction kinetics at surfaces. In a previous work (Thompson et al. 1981. Biophys. J. 33:435-454), a theoretical basis for interpreting TIR-FPR data was described for monovalent ligands that undergo a reversible reaction with monovalent surface sites in a single step. Here, the theory for TIR-FPR has been extended to two different surface binding mechanisms that involve sequential, bivalent surface attachment. Methods for obtaining the intrinsic surface association and dissociation kinetic rates from measured fluorescence photobleaching recovery curves are described. The new theory should be applicable to the association of bivalent protein ligands such as antibodies with supported planar model membranes.

摘要

全内反射荧光漂白恢复技术(TIR-FPR)是一种用于实验研究表面耦合扩散和反应动力学的方法。在之前的一项工作中(汤普森等人,1981年。《生物物理杂志》33:435 - 454),针对单价配体与单价表面位点进行单步可逆反应的情况,描述了一种解释TIR-FPR数据的理论基础。在此,TIR-FPR理论已扩展到涉及连续二价表面附着的两种不同表面结合机制。描述了从测量的荧光漂白恢复曲线中获取固有表面缔合和解离动力学速率的方法。新理论应适用于二价蛋白质配体(如抗体)与支持的平面模型膜的缔合。

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