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大肠杆菌的蜜二糖通透酶。促进扩散反应过程中共底物释放的特性。

Melibiose permease of Escherichia coli. Characteristics of co-substrates release during facilitated diffusion reactions.

作者信息

Bassilana M, Pourcher T, Leblanc G

机构信息

Laboratoire Jean Maetz, Département de Biologie, Commissariat à l'Energie Atomique, Villefranche-sur-Mer, France.

出版信息

J Biol Chem. 1988 Jul 15;263(20):9663-7.

PMID:2838475
Abstract

The mechanism of melibiose symport by the melibiose permease of Escherichia coli was investigated by further analyzing the Na+ (H+ or Li+)-coupled facilitated diffusion reactions catalyzed by the carrier in de-energized membrane vesicles, with particular emphasis on the reaction of sugar exchange at equilibrium. It is first shown that melibiose exchange at equilibrium proceeds without concomitant movement of Na+, i.e. the coupled cation is kinetically occluded during the melibiose exchange reaction. These results provide further experimental support for the model of Na+ sugar co-transport of the physiological substrate melibiose previously suggested (Bassilana, M., Pourcher, T., and Leblanc, G. (1987) J. Biol. Chem. 262, 16865-16870) in which: 1) the mechanisms of co-substrate binding to (or release from) the carrier are ordered processes on both the outer (Na+ first, sugar last) and inner membrane surfaces (sugar first, Na+ last) and give rise to a mirror-type model; 2) release of Na+ from the carrier on the inner membrane surface is very slow and rate-limiting for carrier cycling but is fast on the opposite side, contributing to the asymmetrical functioning of the permease. On the other hand, analysis of the exchange of identical sugars (homologous exchange) and different sugar analogs (heterologous exchange) indicates that the overall rate of sugar exchange reaction coupled to Na+ or Li+ is limited by the rate of one (or more) partial step(s) associated with the inflow of co-substrates and most probably by the rate of sugar release into the intravesicular medium. It is proposed that the variability of the facilitated diffusion reactions catalyzed by the carrier in the presence of different coupled cations and/or sugar analogs reflects variations in the rate of co-substrate release from the carrier on the inner membrane surface.

摘要

通过进一步分析大肠杆菌蜜二糖通透酶催化的去能化膜囊泡中Na⁺(H⁺或Li⁺)偶联的易化扩散反应,研究了蜜二糖同向转运机制,特别关注了平衡时糖交换反应。首先表明,平衡时蜜二糖交换过程中没有伴随Na⁺的移动,即在蜜二糖交换反应过程中偶联阳离子在动力学上被封闭。这些结果为先前提出的生理底物蜜二糖的Na⁺糖共转运模型(Bassilana, M., Pourcher, T., and Leblanc, G. (1987) J. Biol. Chem. 262, 16865 - 16870)提供了进一步的实验支持,该模型认为:1)共底物与载体结合(或从载体释放)的机制在膜外表面(Na⁺先,糖后)和内膜表面(糖先,Na⁺后)都是有序过程,并产生一个镜像型模型;2)Na⁺从载体在内膜表面的释放非常缓慢,是载体循环的限速步骤,但在相反一侧则很快,这有助于通透酶的不对称功能。另一方面,对相同糖类的交换(同源交换)和不同糖类似物的交换(异源交换)分析表明,与Na⁺或Li⁺偶联的糖交换反应的总体速率受与共底物流入相关的一个(或多个)部分步骤的速率限制,很可能受糖释放到囊泡内介质中的速率限制。有人提出,在存在不同偶联阳离子和/或糖类似物的情况下,载体催化的易化扩散反应的变异性反映了共底物从载体在内膜表面释放速率的变化。

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