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蛋白脂质体细胞色素c氧化酶的调控:部分反应

Control of proteoliposomal cytochrome c oxidase: the partial reactions.

作者信息

Nicholls P

机构信息

Department of Biological Sciences, Brock University, St. Catharines, Ont., Canada.

出版信息

Biochem Cell Biol. 1990 Sep;68(9):1135-41. doi: 10.1139/o90-169.

Abstract

The steady-state spectroscopic behaviour and the turnover of cytochrome c oxidase incorporated into proteoliposomes have been investigated as functions of membrane potential and pH gradient. The respiration rate is almost linearly dependent on [cytochrome c2+] at high flux, but while the cytochrome a redox state is always dependent on the [cytochrome c2+] steady state, it reaches a maximum reduction level less than 100% in each case. The maximal aerobic steady-state reduction level of cytochrome a is highest in the presence of valinomycin and lowest in the presence of nigericin. The proportion of [cytochrome c2+] required to achieve 50% of maximal reduction of cytochrome a varies with the added ionophores; the apparent redox potential of cytochrome a is most positive in the fully decontrolled system (plus valinomycin and nigericin). At low levels of cytochrome a reduction, the rate of respiration is no longer a linear function of [cytochrome c2+], but is dependent upon the redox state of both cytochromes a and c. That is, proteoliposomal oxidase does not follow Smith-Conrad kinetics at low cytochrome c reduction levels, especially in the controlled states. The control of cytochrome oxidase turnover by delta pH and by delta psi can be explained either by an allosteric model or by a model with reversed electron transfer between the binuclear centre and cytochrome a. Other evidence suggests that the reversed electron transfer model may be the correct one.

摘要

已研究了掺入蛋白脂质体中的细胞色素c氧化酶的稳态光谱行为和周转情况,作为膜电位和pH梯度的函数。在高通量下,呼吸速率几乎与[细胞色素c2+]呈线性相关,但尽管细胞色素a的氧化还原状态始终取决于[细胞色素c2+]的稳态,但在每种情况下其最大还原水平均低于100%。细胞色素a的最大需氧稳态还原水平在缬氨霉素存在时最高,在尼日利亚菌素存在时最低。实现细胞色素a最大还原的50%所需的[细胞色素c2+]比例随添加的离子载体而变化;在完全失控的系统(加缬氨霉素和尼日利亚菌素)中,细胞色素a的表观氧化还原电位最正。在细胞色素a还原水平较低时,呼吸速率不再是[细胞色素c2+]的线性函数,而是取决于细胞色素a和c的氧化还原状态。也就是说,在细胞色素c还原水平较低时,尤其是在受控状态下,蛋白脂质体氧化酶不遵循史密斯-康拉德动力学。通过δpH和δψ对细胞色素氧化酶周转的控制可以用别构模型或双核中心与细胞色素a之间反向电子传递的模型来解释。其他证据表明反向电子传递模型可能是正确的。

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