Interrelationship between oxidative energy transformation and energy consumption at mitochondrial and cellular levels.

Acta biologica et medica Germanica Pub Date : 1982-01-01
G Letko, U Küster, R Bohnensack, G Böhme, K Pohl, W Kunz
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Abstract

The adaptation of oxidative energy transformation in mitochondria to the energy demand of cellular metabolism was investigated in experiments with isolated mitochondria and liver cells and by computer simulation in terms of a mathematical model. Separate draining of different energy pools allowed the determination of the relation between these pools and the elucidation of the importance of the connecting enzyme reactions to the regulation of the whole process. The following conclusions can be drawn from the results: 1. The intramitochondrial adenine nucleotide pool exhibits a homogeneous behaviour, and its changes are the signal for ATP synthesis. 2. The proton-motive force which is in near-equilibrium with the intramitochondrial phosphorylation potential is the immediate signal for the respiratory chain. 3. The intramitochondrial phosphorylation potential is transformed into the external one by a flux-dependent non-equilibrium reaction of the translocator. 4. The rate of respiration-linked ATP formation is regulated by more than one reaction step with varying control strength. 5. In both isolated mitochondria and hepatocytes an activation of respiration is provoked by a decrease in the mitochondrial energy state caused by cellular energy utilization.

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线粒体和细胞水平上氧化能量转化和能量消耗之间的相互关系。
用分离的线粒体和肝细胞进行实验,并根据数学模型进行计算机模拟,研究了线粒体中氧化能转化对细胞代谢能量需求的适应性。不同能量池的分离排水可以确定这些池之间的关系,并阐明连接酶反应对整个过程调节的重要性。从研究结果可以得出以下结论:1。线粒体内腺嘌呤核苷酸库表现出均匀的行为,其变化是ATP合成的信号。2. 与线粒体内磷酸化电位接近平衡的质子动力是呼吸链的直接信号。3.线粒体内磷酸化电位通过转运体的非平衡反应转化为线粒体外磷酸化电位。4. 呼吸相关ATP形成的速率受多个反应步骤和不同控制强度的调节。5. 在分离的线粒体和肝细胞中,呼吸的激活是由细胞能量利用引起的线粒体能量状态下降引起的。
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