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量化各个步骤对线粒体呼吸控制的贡献。

Quantification of the contribution of various steps to the control of mitochondrial respiration.

作者信息

Groen A K, Wanders R J, Westerhoff H V, van der Meer R, Tager J M

出版信息

J Biol Chem. 1982 Mar 25;257(6):2754-7.

PMID:7061448
Abstract

Using principles developed by Kacser and Burns ((1973) in Rate Control of Biological Processes (Davies, D. D., ed) pp. 65-104, Cambridge University Press, London) and Heinrich and Rapoport ((1974) Eur. J. Biochem. 42, 97-105), inhibitor titration studies were carried out in order to quantify the amount of control (control strength) exerted by different steps in oxidative phosphorylation on the rate of mitochondrial oxygen uptake. In the resting state of respiration, nearly all control is exerted by the passive permeability of the mitochondrial inner membrane to protons. In the intermediate states and even in the active state of respiration, control is distributed among different steps including the adenine nucleotide translocator and cytochrome c oxidase. It is therefore not possible to speak of the rate-limiting step in oxidative phosphorylation. Since both the adenine nucleotide translocator and cytochrome c oxidase appear to be rate-controlling, hypotheses suggesting that respiration is fully controlled by either of these two steps alone need to be modified.

摘要

运用凯瑟和伯恩斯((1973年),载于《生物过程的速率控制》(戴维斯,D.D.编),第65 - 104页,剑桥大学出版社,伦敦)以及海因里希和拉波波特((1974年),《欧洲生物化学杂志》42卷,第97 - 105页)提出的原理,开展了抑制剂滴定研究,以量化氧化磷酸化过程中不同步骤对线粒体氧摄取速率施加的控制量(控制强度)。在呼吸静止状态下,几乎所有控制都由线粒体内膜对质子的被动通透性施加。在呼吸的中间状态乃至活跃状态下,控制分布于包括腺嘌呤核苷酸转位酶和细胞色素c氧化酶在内的不同步骤。因此,不能说氧化磷酸化存在限速步骤。由于腺嘌呤核苷酸转位酶和细胞色素c氧化酶似乎都参与速率控制,认为呼吸仅由这两个步骤中的任何一个完全控制的假说需要修正。

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