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支原体细胞中电化学质子梯度大小的分级

Gradation of the magnitude of 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):499-506. doi: 10.1111/j.1432-1033.1981.tb05091.x.

Abstract

The results presented show that in Mycoplasma mycoides var. Capri, regulation of glucose uptake by its non-metabolizable analogue methyl alpha-D-glucoside, can be used to control intracellular ATP content. This in turn leads to a control of the rate of proton extrusion catalysed by the Mg2+-dependent ATPase (phi (cHxN)2C H+) and the respective amplitudes of the components of delta mu H+. When Mycoplasma cells are incubated with 10 mM methyl alpha-D-glucoside, the amplitude of phi (cHxN)2C H+, of the electrical potential delta psi and of the chemical gradient delta pH become continuous functions of external glucose concentration within the limits of the non-energized and fully energized states. Analysis of the relationships between graduated amplitudes of delta psi, delta pH and phi (cHxN) 2C H+ show that the primary form of energy stored by a delta mu H+ generator is the electrical potential.

摘要

所呈现的结果表明,在山羊支原体中,其不可代谢类似物α-D-甲基葡萄糖苷对葡萄糖摄取的调节可用于控制细胞内ATP含量。这进而导致对由Mg2+依赖性ATP酶(φ(cHxN)2C H+)催化的质子外排速率以及δμH+各组分的相应幅度的控制。当支原体细胞与10 mMα-D-甲基葡萄糖苷一起孵育时,在非激发态和完全激发态的范围内,φ(cHxN)2C H+的幅度、电势δψ和化学梯度δpH成为外部葡萄糖浓度的连续函数。对δψ、δpH和φ(cHxN) 2C H+的渐变幅度之间关系的分析表明,由δμH+发生器储存的能量的主要形式是电势。

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