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巴氏芽孢杆菌中铵/尿素依赖性质子电化学势的产生及ATP的合成。

Ammonium/urea-dependent generation of a proton electrochemical potential and synthesis of ATP in Bacillus pasteurii.

作者信息

Jahns T

机构信息

Universität des Saarlandes, Saarbrücken, Germany.

出版信息

J Bacteriol. 1996 Jan;178(2):403-9. doi: 10.1128/jb.178.2.403-409.1996.

Abstract

The influence of ammonium and urea on the components of the proton electrochemical potential (delta p) and de novo synthesis of ATP was studied with Bacillus pasteurii ATCC 11859. In washed cells grown at high urea concentrations, a delta p of -56 +/- 29 mV, consisting of a membrane potential (delta psi) of -228 +/- 19 mV and of a transmembrane pH gradient (delta pH) equivalent to 172 +/- 38 mV, was measured. These cells contained only low amounts of potassium, and the addition of ammonium caused an immediate net decrease of both delta psi and delta pH, resulting in a net increase of delta p of about 49 mV and de novo synthesis of ATP. Addition of urea and its subsequent hydrolysis to ammonium by the cytosolic urease also caused an increase of delta p and ATP synthesis; a net initial increase of delta psi, accompanied by a slower decrease of delta pH in this case, was observed. Cells grown at low concentrations of urea contained high amounts of potassium and maintained a delta p of -113 +/- 26 mV, with a delta psi of -228 +/- 22 mV and a delta pH equivalent to 115 +/- 20 mV. Addition of ammonium to such cells resulted in the net decrease of delta psi and delta pH without a net increase in delta p or synthesis of ATP, whereas urea caused an increase of delta p and de novo synthesis of ATP, mainly because of a net increase of delta psi. The data reported in this work suggest that the ATP-generating system is coupled to urea hydrolysis via both an alkalinization of the cytoplasm by the ammonium generated in the urease reaction and a net increase of delta psi that is probably due to an efflux of ammonium ions. Furthermore, the findings of this study show that potassium ions are involved in the regulation of the intracellular pH and that ammonium ions may functionally replace potassium to a certain extent in reducing the membrane potential and alkalinizing the cytoplasm.

摘要

用巴氏芽孢杆菌ATCC 11859研究了铵和尿素对质子电化学势(Δp)组分及ATP从头合成的影响。在高尿素浓度下生长的洗涤细胞中,测得Δp为-56±29 mV,由-228±19 mV的膜电位(Δψ)和相当于172±38 mV的跨膜pH梯度(ΔpH)组成。这些细胞仅含有少量钾,添加铵会导致Δψ和ΔpH立即净下降,导致Δp净增加约49 mV并从头合成ATP。添加尿素及其随后被胞质脲酶水解为铵也会导致Δp增加和ATP合成;在此情况下,观察到Δψ最初净增加,同时ΔpH下降较慢。在低尿素浓度下生长的细胞含有大量钾,并维持-113±26 mV的Δp,其中Δψ为-228±22 mV,ΔpH相当于115±20 mV。向此类细胞中添加铵会导致Δψ和ΔpH净下降,而Δp无净增加或ATP合成,而尿素会导致Δp增加和ATP从头合成,主要是因为Δψ净增加。这项工作报道的数据表明,ATP生成系统通过脲酶反应中产生的铵使细胞质碱化以及可能由于铵离子外流导致的Δψ净增加与尿素水解相偶联。此外,本研究结果表明钾离子参与细胞内pH的调节,并且铵离子在一定程度上可能在功能上替代钾以降低膜电位并使细胞质碱化。

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