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The nature of mitochondrial respiration and discrimination between membrane and pump properties.

机译:线粒体呼吸的性质以及膜和泵的性质之间的区别。

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摘要

A new criterion is utilized for the interpretation of flow-force relationships in rat liver mitochondria. The criterion is based on the view that the nature of the relationship between the H+/O ratio and the membrane potential can be inferred from the relationship between ohmic-uncoupler-induced extra respiration and the membrane potential. Thus a linear relationship between extra respiration and membrane potential indicates unequivocally the independence of the H+/O ratio from the membrane potential and the leak nature of the resting respiration [Brand, Chien, and Diolez (1994) Biochem. J. 297, 27-29]. On the other hand, a non-linear relationship indicates that the H+/O ratio is dependent on the membrane potential. The experimental assessment of this relationship in the presence of an additional ohmic leak, however, is rendered difficult by both the uncoupler-induced depression of membrane potential and the limited range of dependence of the H+/O ratio on the membrane potential. We have selected conditions, i.e. incubation of mitochondria at low temperatures, where the extent of non-linearity is markedly increased. It appears that the nature of the resting respiration of mitochondria in vitro is markedly dependent on the temperature: at low temperatures the percentage of resting respiration due to membrane leak decreases and that due to intrinsic uncoupling of the proton pumps increases.
机译:一种新的标准被用于解释大鼠肝线粒体中的流力关系。该标准基于这样的观点,即可以从欧姆解偶联剂引起的额外呼吸与膜电位之间的关系推断出H + / O比与膜电位之间的关系的性质。因此,额外呼吸与膜电位之间的线性关系明确表明,H + / O比值与膜电位和静息呼吸的泄漏性质无关[Brand,Chien,and Diolez(1994)Biochem。 J. 297,27-29]。另一方面,非线性关系表明H + / O比取决于膜电位。然而,由于解偶联剂引起的膜电位的降低以及H + / O比对膜电位的依赖性范围有限,使得在存在额外的欧姆泄漏的情况下对该关系进行实验评估变得困难。我们选择了条件,即线粒体在低温下孵育,其中非线性程度明显增加。似乎线粒体的体外静息呼吸的性质明显取决于温度:在低温下,由于膜泄漏引起的静息呼吸的百分比降低,并且由于质子泵的固有解偶联而增加。

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