Taglicht D, Padan E, Schuldiner S
Division of Microbial and Molecular Ecology, Alexander Silberman Institute of Life Sciences, Hebrew University of Jerusalem, Israel.
J Biol Chem. 1993 Mar 15;268(8):5382-7.
The H+:Na+ exchange stoichiometry of NhaA, a sodium-proton antiporter coded by the nhaA gene of Escherichia coli, has been determined using purified NhaA protein reconstituted into sodium-loaded proteoliposomes. One approach involved measuring, in parallel experiments, the Na+ efflux and H+ influx from such proteoliposomes and calculating the stoichiometry from the ratio of these fluxes. A second approach was based on measuring the membrane potential generated by NhaA at various sodium gradients and assuming complete coupling and thermodynamic equilibrium between the membrane potential and the ion gradients. The results from both methods agree with a stoichiometry of 2 H+ exchanged for each Na+. This value is independent of pH between pH 7.2 and 8.1. These results support the suggestion that a change in the catalytic rate of NhaA rather than its stoichiometry is crucial for its role in regulation of intracellular pH in alkaline environments.
NhaA是一种由大肠杆菌nhaA基因编码的钠-质子反向转运蛋白,利用重构于负载钠的蛋白脂质体中的纯化NhaA蛋白,已测定出其H⁺:Na⁺交换化学计量比。一种方法是在平行实验中测量此类蛋白脂质体的Na⁺外流和H⁺内流,并根据这些通量的比值计算化学计量比。第二种方法基于测量NhaA在各种钠梯度下产生的膜电位,并假设膜电位与离子梯度之间完全耦合且处于热力学平衡。两种方法的结果均表明,化学计量比为每2个H⁺交换1个Na⁺。该值在pH 7.2至8.1之间与pH无关。这些结果支持了这样一种观点,即NhaA催化速率的变化而非其化学计量比,对其在碱性环境中调节细胞内pH的作用至关重要。