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温度对海芋线粒体中电子传递的影响

Effects of Temperature on Electron Transport in Arum maculatum Mitochondria.

作者信息

Cook N D, Cammack R

机构信息

King's College, Department of Plant Sciences, 68 Half Moon Lane, London SE24 9JF, United Kingdom.

出版信息

Plant Physiol. 1985 Oct;79(2):332-5. doi: 10.1104/pp.79.2.332.

Abstract

The effects of temperature upon the respiratory pathways of Arum maculatum mitochondria have been studied. The alternate oxidase sustained a greater proportion of the total respiration at low temperatures than at higher temperatures. Arrhenius plots of respiratory activities show two discontinuities, one at 14 degrees C and one at 21 degrees C. The lower temperature discontinuity was associated with electron transport from succinate dehydrogenase to the alternative oxidase, enzymes that face the inner side of the membrane while the higher temperature discontinuity was associated with electron transport from the external NADH dehydrogenase to cytochrome c oxidase, which face the outer side of the membrane. Both discontinuities resulted in a decrease in the activation energy for electron transport on one side of the membrane. Arrhenius plots of transmembrane electron transport showed discontinuities at both 14 degrees and 21 degrees C but the upper discontinuity resulted in an increase in the activation energy. Activation energies determined for the respiratory activities show that above 21 degrees C the exogenous NADH-cytochrome pathway and the succinate-alternative oxidase pathway were lower than those for the NADH-alternative pathway or the succinate cytochrome pathway.

摘要

研究了温度对海芋线粒体呼吸途径的影响。交替氧化酶在低温下维持的总呼吸比例高于高温时。呼吸活性的阿伦尼乌斯曲线显示出两个断点,一个在14℃,另一个在21℃。较低温度的断点与从琥珀酸脱氢酶到交替氧化酶的电子传递有关,这些酶面向膜的内侧,而较高温度的断点与从外部NADH脱氢酶到细胞色素c氧化酶的电子传递有关,后者面向膜的外侧。两个断点都导致膜一侧电子传递的活化能降低。跨膜电子传递的阿伦尼乌斯曲线在14℃和21℃时都显示出断点,但较高温度的断点导致活化能增加。为呼吸活性测定的活化能表明,在21℃以上,外源NADH - 细胞色素途径和琥珀酸 - 交替氧化酶途径的活化能低于NADH - 交替途径或琥珀酸 - 细胞色素途径。

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Cyanide-resistant Respiration of Sweet Potato Mitochondria.甘薯线粒体抗氰呼吸。
Plant Physiol. 1975 Feb;55(2):365-9. doi: 10.1104/pp.55.2.365.
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The external NADH dehydrogenases of intact plant mitochondria.完整植物线粒体的外部NADH脱氢酶
Biochim Biophys Acta. 1973 Jan 18;292(1):105-16. doi: 10.1016/0005-2728(73)90255-7.

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