脱氮副球菌
ATP合酶
氧化磷酸化
化学渗透
呼吸链
生物物理学
小泡
化学
ATP酶
解偶联剂
生物化学
线粒体
膜
生物
酶
作者
Tatyana V. Zharova,Andrei D. Vinogradov
出处
期刊:Biokhimiya
[Pleiades Publishing]
日期:2012-09-01
卷期号:77 (9): 1000-1007
被引量:3
标识
DOI:10.1134/s0006297912090064
摘要
Changes in respiratory activity, transmembrane electric potential, and ATP synthesis as induced by additions of limited amounts of ADP and P(i) to tightly coupled inverted (inside-out) Paracoccus denitrificans plasma membrane vesicles were traced. The pattern of the changes was qualitatively the same as those observed for coupled mitochondria during the classical State 4-State 3-State 4 transition. Bacterial vesicles devoid of energy-dependent permeability barriers for the substrates of oxidation and phosphorylation were used as a simple experimental model to investigate two possible mechanisms of respiratory control: (i) in State 4 phosphoryl transfer potential (ATP/ADP × P(i)) is equilibrated with proton-motive force by reversibly operating F(1)·F(o)-ATPase (thermodynamic control); (ii) in State 4 apparent "equilibrium" is reached by unidirectional operation of proton motive force-activated F(1)·F(o)-ATP synthase. The data support the kinetic mechanism of the respiratory control phenomenon.
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