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高等植物线粒体的电子顺磁共振研究。I. 泛半醌及其与交替呼吸氧化作用的关系

EPR studies of higher plant mitochondria. I Ubisemiquinone and its relation to alternative respiratory oxidations.

作者信息

Rich P R, Moore A L, Ingledew W J, Bonner W D

出版信息

Biochim Biophys Acta. 1977 Dec 23;462(3):501-14. doi: 10.1016/0005-2728(77)90097-4.

Abstract

An EPR investigation of the region of the higher plant respiratory chain involving ubiquinone and Center S-3 of succinate dehydrogenase is reported. At temperatures close to those of liquid helium, first derivative spectra corresponding to Center S-3 (gmax = 2.017) and a signal split around g = 2.00 (major features of peaks and troughs at g values of 2.045, 2.03, 1.985, 1.97 and 1.96) were observed in mung bean (Phaseolus aureus), Arum maculatum spadix, Sauromatum guttatum spadix and tulip bulb (Tulipa gesnerana) mitochondria. The split signal was small or absent in potato tuber and Symplocarpus foetidus spadix mitochondria. The redox behavior of these signals in mung bean mitochondria in a variety of respiratory steady-state conditions suggested that the components giving rise to them were an integral part of the respiratory chain and were located on the substrate side of coupling Site II. The split signal could be removed by addition of hydroxamic acids in all tissues tested, although the Ks of this effect was an order of magnitude higher than the Ki of inhibition of the alternative respiratory pathway in mung bean and Sauromatum guttatum spadix mitochondria. The results are discussed in relation to the current ideas on the ordering of components in the region around the classical Site II of the respiratory chain and in relation to the location of the alternative respiratory oxidase pathway of higher plants.

摘要

本文报道了对高等植物呼吸链中涉及泛醌和琥珀酸脱氢酶中心S-3区域的电子顺磁共振(EPR)研究。在接近液氦温度的条件下,在绿豆(Phaseolus aureus)、海芋(Arum maculatum)肉穗花序、臭菘(Sauromatum guttatum)肉穗花序和郁金香鳞茎(Tulipa gesnerana)线粒体中观察到了对应于中心S-3(gmax = 2.017)的一阶导数光谱以及一个在g = 2.00附近分裂的信号(在g值为2.045、2.03、1.985、1.97和1.96处有峰和谷的主要特征)。在马铃薯块茎和臭菘肉穗花序线粒体中,分裂信号较小或不存在。在绿豆线粒体中,这些信号在各种呼吸稳态条件下的氧化还原行为表明,产生这些信号的成分是呼吸链的一个组成部分,位于偶联位点II的底物侧。在所测试的所有组织中,通过添加异羟肟酸可以去除分裂信号,尽管这种效应的Ks比抑制绿豆和臭菘肉穗花序线粒体中交替呼吸途径的Ki高一个数量级。本文结合当前关于呼吸链经典位点II周围区域成分排序的观点以及高等植物交替呼吸氧化酶途径的位置对结果进行了讨论。

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