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支原体细胞中的电化学质子梯度。

The electrochemical proton gradient in Mycoplasma cells.

作者信息

Benyoucef M, Rigaud J L, Leblanc G

出版信息

Eur J Biochem. 1981 Jan;113(3):491-8. doi: 10.1111/j.1432-1033.1981.tb05090.x.

Abstract

The electrochemical proton gradient, delta mu H+ generated upon glycolysis by Mycoplasma mycoides var. Capri cells has been determined. The components, the transmembrane pH gradient, delta pH, and the membrane potential, delta psi, were measured using several methods. The determination of the delta pH was conducted by measuring the transmembrane distribution of weak acids (acetate and butyrate) and of a weak base (methylamine), using flow dialysis and filtration techniques. The transmembrane electrical potential was determined from the distribution of the lipophilic cation Ph3MeP+ and of Rb+ or K+ in the presence of valinomycin. At extra-cellular pH 7.2, glycolyzing Mycoplasma cells maintain an internal pH more alkaline (0.5 pH unit) than that of the milieu and an electrical potential of - 85 mV, interior negative. The delta mu H+ in M. mycoides var. Capri cells is thus about - 115 mV. When the external pH was altered from 7.7 to 5.7 delta psi decreased from - 90 mV to - 60 mV. On other hand although the internal pH decreased, delta pH was found to increase from 0.2 to 1.0 pH unit. Since the changes in delta psi were largely compensated by the changes in delta pH, delta mu H+ remained practically constant at about - 115 mV throughout the pH range tested. Finally, inhibition of delta pH by N,N'-dicyclohexylcarbodiimide, carbonylcyanide-p-trifluoromethoxyphenylhydrazone or nigericin confirmed that chemiosmotic phenomena contribute to energy transduction across the membranes of M. mycoides var. Capri cells.

摘要

已经测定了蕈状支原体山羊亚种细胞在糖酵解过程中产生的电化学质子梯度ΔμH⁺。使用几种方法测量了其组成部分,即跨膜pH梯度ΔpH和膜电位Δψ。通过使用流动透析和过滤技术测量弱酸(乙酸盐和丁酸盐)和弱碱(甲胺)的跨膜分布来测定ΔpH。通过在缬氨霉素存在下测量亲脂性阳离子Ph₃MeP⁺以及Rb⁺或K⁺的分布来确定跨膜电势。在细胞外pH为7.2时,进行糖酵解的支原体细胞维持比周围环境更碱性(0.5个pH单位)的内部pH以及-85 mV的电势,内部为负。因此,蕈状支原体山羊亚种细胞中的ΔμH⁺约为-115 mV。当外部pH从7.7变为5.7时,Δψ从-90 mV降至-60 mV。另一方面,尽管内部pH下降,但发现ΔpH从0.2个pH单位增加到1.0个pH单位。由于Δψ的变化在很大程度上被ΔpH的变化所补偿,在整个测试的pH范围内,ΔμH⁺实际上保持恒定在约-115 mV。最后,N,N'-二环己基碳二亚胺、羰基氰化物-对-三氟甲氧基苯腙或尼日利亚菌素对ΔpH的抑制作用证实了化学渗透现象有助于能量在蕈状支原体山羊亚种细胞的膜上进行转导。

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