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大肠杆菌膜囊泡中Na⁺-H⁺逆向转运活性与电化学质子梯度各组分之间的关系。

Relationships between the Na+-H+ antiport activity and the components of the electrochemical proton gradient in Escherichia coli membrane vesicles.

作者信息

Bassilana M, Damiano E, Leblanc G

出版信息

Biochemistry. 1984 Feb 28;23(5):1015-22. doi: 10.1021/bi00300a033.

Abstract

The kinetics of Na+ efflux from Escherichia coli RA 11 membrane vesicles taking place along a favorable Na+ concentration gradient are strongly dependent on the generation of an electrochemical proton gradient. An energy-dependent acceleration of the Na+ efflux rate is observed at all external pHs between 5.5 and 7.5 and is prevented by uncoupling agents. The contributions of the electrical potential (delta psi) and chemical potential (delta pH) of H+ to the mechanism of Na+ efflux acceleration have been studied by determining the effects of (a) selective dissipation of delta psi and delta pH in respiring membrane vesicles with valinomycin or nigericin and (b) imposition of outwardly directed K+ diffusion gradients (imposed delta psi, interior negative) or acetate diffusion gradients (imposed delta pH, interior alkaline). The data indicate that, at pH 6.6 and 7.5, delta pH and delta psi individually and concurrently accelerate the downhill Na+ efflux rate. At pH 5.5, the Na+ efflux rate is enhanced by delta pH only when the imposed delta pH exceeds a threshold delta pH value; moreover, an imposed delta psi which per se does not enhance the Na+ efflux rate does contribute to the acceleration of Na+ efflux when imposed simultaneously with a delta pH higher than the threshold delta pH value. The results strongly suggest that the Na+-H+ antiport mechanism catalyzes the downhill Na+ efflux.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

从大肠杆菌RA 11膜囊泡中沿有利的钠离子浓度梯度发生的钠离子外流动力学,强烈依赖于电化学质子梯度的产生。在5.5至7.5之间的所有外部pH值下,均观察到钠离子外流速率的能量依赖性加速,且这种加速被解偶联剂所抑制。通过确定以下因素的影响,研究了氢离子的电势(Δψ)和化学势(ΔpH)对钠离子外流加速机制的贡献:(a)用缬氨霉素或尼日利亚菌素选择性耗散呼吸膜囊泡中的Δψ和ΔpH;(b)施加外向的钾离子扩散梯度(施加的Δψ,内部为负)或乙酸盐扩散梯度(施加的ΔpH,内部为碱性)。数据表明,在pH 6.6和7.5时,ΔpH和Δψ单独或同时加速钠离子的下坡外流速率。在pH 5.5时,仅当施加的ΔpH超过阈值ΔpH值时,ΔpH才会提高钠离子外流速率;此外,本身不会提高钠离子外流速率的施加的Δψ,在与高于阈值ΔpH值的ΔpH同时施加时,确实有助于加速钠离子外流。结果强烈表明,钠氢反向转运机制催化了钠离子的下坡外流。(摘要截短于250字)

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