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用于评估膜运输系统中交换通量的图表方法。

The diagram methods for the evaluation of exchange fluxes in membrane transport systems.

作者信息

Chen Y D

机构信息

Laboratory of Molecular Biology, NIDDK, NIH, Bethesda, MD 20892.

出版信息

Biophys Chem. 1990 Jan;35(1):55-63. doi: 10.1016/0301-4622(90)80060-k.

Abstract

In this paper theoretical methods for the evaluation of fluxes of ligand exchange processes in a transporter-mediated membrane transport system are studied. The exchange process of a transport system is defined as a set of reactions of the transporters in the membrane that do not result in a complete turnover and must include the following consecutive sequence of steps: the binding of ligands from bath 1 and a subsequent release of bound ligands to bath 2 followed immediately by a binding of ligands from bath 2 and a subsequent release of bound ligands to bath 1. Thus, unlike the ordinary one-way cycles, the completion of an exchange process does not result in a net transport of ligands across the membrane. However, since it exchanges the ligands between the two baths, the exchange process of a transport system is closely related to the operational tracer flux of labelled ligands in the system. In this paper, both the numerical and the analytical procedures for the evaluation of exchange fluxes in any given biochemical diagram are discussed. In particular, we show that the exchange fluxes of a given kinetic diagram, like one-way cycle fluxes, can be expressed analytically in terms of the rate constants of the diagram with the use of either the original diagram or an expanded diagram. The diagram methods presented in this paper should be very useful in analyzing the mechanisms of transporter-mediated transport systems when tracer flux data are available.

摘要

本文研究了在转运体介导的膜运输系统中评估配体交换过程通量的理论方法。运输系统的交换过程被定义为膜中转运体的一组反应,这些反应不会导致完全周转,并且必须包括以下连续的步骤序列:从浴1中结合配体,随后将结合的配体释放到浴2中,紧接着从浴2中结合配体,然后将结合的配体释放到浴1中。因此,与普通的单向循环不同,交换过程的完成不会导致配体跨膜的净运输。然而,由于它在两个浴之间交换配体,运输系统的交换过程与系统中标记配体的操作示踪剂通量密切相关。本文讨论了评估任何给定生化图中交换通量的数值和分析程序。特别是,我们表明,给定动力学图的交换通量,与单向循环通量一样,可以使用原始图或扩展图,根据图的速率常数进行解析表达。当有示踪剂通量数据时,本文提出的图方法在分析转运体介导的运输系统机制方面应该非常有用。

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