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从贮藏组织的β-菜豆 isolated tonoplast vesicles 中分离的 Na/H antiport。

Na/H Antiport in Isolated Tonoplast Vesicles from Storage Tissue of Beta vulgaris.

机构信息

Department of Biology, McGill University, 1205 Avenue Docteur Penfield, Montreal, Quebec, Canada H3A 1B1.

出版信息

Plant Physiol. 1985 May;78(1):163-7. doi: 10.1104/pp.78.1.163.

Abstract

The pH-dependent fluorescence quenching of acridine orange was used to study the Na(+)- and K(+)-dependent H(+) fluxes in tonoplast vesicles isolated from storage tissue of red beet and sugar beet (Beta vulgaris L.). The Na(+)-dependent H(+) flux across the tonoplast membrane could be resolved into two components: (a) a membrane potential-mediated flux through conductive pathways; and (b) an electroneutral flux which showed Michaelis-Menten kinetics relationship to Na(+) concentration and was competitively inhibited by amiloride (K(i) = 0.1 millimolar). The potential-dependent component of H(+) flux showed an approximately linear dependence on Na(+) concentration. In contrast, the K(+)-dependent H(+) flux apparently consisted of a single component which showed an approximately linear dependence on K(+) concentration, and was insensitive to amiloride. Based on the Na(+)- and K(+)-dependent H(+) fluxes, the passive permeability of the vesicle preparation to Na(+) was about half of that to K(+).The apparent K(m) for Na(+) of the electroneutral Na(+)/H(+) exchange varied by more than 3-fold (7.5-26.5 millimolar) when the internal and external pH values were changed in parallel. The results suggest a simple kinetic model for the operation of the Na(+)/H(+) antiport which can account for the estimated in vivo accumulation ratio for Na(+) into the vacuole.

摘要

吖啶橙的 pH 依赖性荧光猝灭被用来研究从红甜菜和糖甜菜(Beta vulgaris L.)贮藏组织中分离的液泡膜上的 Na(+)-和 K(+)-依赖性 H(+)流。质膜上的 Na(+)-依赖性 H(+)流可以分为两个组成部分:(a) 通过导电途径的膜电位介导的通量;和 (b) 一种电中性通量,它对 Na(+)浓度表现出米氏动力学关系,并且被阿米洛利(K(i) = 0.1 毫摩尔)竞争性抑制。H(+)流的电位依赖性部分与 Na(+)浓度呈近似线性关系。相比之下,K(+)-依赖性 H(+)流显然由一个单一的组成部分组成,该组成部分对 K(+)浓度呈近似线性关系,并且对阿米洛利不敏感。基于 Na(+)-和 K(+)-依赖性 H(+)流,囊泡制剂对 Na(+)的被动通透性约为对 K(+)的一半。当内部和外部 pH 值平行变化时,电中性 Na(+)/H(+)交换的表观 K(m) for Na(+)变化超过 3 倍(7.5-26.5 毫摩尔)。结果表明,Na(+)/H(+)反向转运的操作有一个简单的动力学模型,可以解释 Na(+)在体内进入液泡的估计积累比。

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