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菠菜绿叶线粒体中类似“呼吸体”的超级复合体。

"Respirasome"-like supercomplexes in green leaf mitochondria of spinach.

作者信息

Krause Frank, Reifschneider Nicole H, Vocke Dirk, Seelert Holger, Rexroth Sascha, Dencher Norbert A

机构信息

Physical Biochemistry, Department of Chemistry, Darmstadt University of Technology, Petersenstrasse 22, D-64287 Darmstadt, Germany.

出版信息

J Biol Chem. 2004 Nov 12;279(46):48369-75. doi: 10.1074/jbc.M406085200. Epub 2004 Sep 1.

Abstract

Higher plant mitochondria have many unique features compared with their animal and fungal counterparts. This is to a large extent related to the close functional interdependence of mitochondria and chloroplasts, in which the two ATP-generating processes of oxidative phosphorylation and photosynthesis, respectively, take place. We show that digitonin treatment of mitochondria contaminated with chloroplasts from spinach (Spinacia oleracea) green leaves at two different buffer conditions, performed to solubilize oxidative phosphorylation supercomplexes, selectively extracts the mitochondrial membrane protein complexes and only low amounts of stroma thylakoid membrane proteins. By analysis of digitonin extracts from partially purified mitochondria of green leaves from spinach using blue and colorless native electrophoresis, we demonstrate for the first time that in green plant tissue a substantial proportion of the respiratory complex IV is assembled with complexes I and III into "respirasome"-like supercomplexes, previously observed in mammalian, fungal, and non-green plant mitochondria only. Thus, fundamental features of the supramolecular organization of the standard respiratory complexes I, III, and IV as a respirasome are conserved in all higher eukaryotes. Because the plant respiratory chain is highly branched possessing additional alternative enzymes, the functional implications of the occurrence of respiratory supercomplexes in plant mitochondria are discussed.

摘要

与动物和真菌的线粒体相比,高等植物线粒体具有许多独特的特征。这在很大程度上与线粒体和叶绿体在功能上的紧密相互依存有关,其中分别发生了氧化磷酸化和光合作用这两个产生ATP的过程。我们表明,在两种不同的缓冲条件下,用洋地黄皂苷处理被菠菜(Spinacia oleracea)绿叶叶绿体污染的线粒体,以溶解氧化磷酸化超复合物,该处理选择性地提取了线粒体膜蛋白复合物,仅提取了少量的基质类囊体膜蛋白。通过使用蓝色和无色非变性电泳分析菠菜绿叶部分纯化线粒体的洋地黄皂苷提取物,我们首次证明,在绿色植物组织中,相当一部分呼吸复合物IV与复合物I和III组装成“呼吸体”样超复合物,此前仅在哺乳动物、真菌和非绿色植物线粒体中观察到这种情况。因此,标准呼吸复合物I、III和IV作为呼吸体的超分子组织的基本特征在所有高等真核生物中都是保守的。由于植物呼吸链高度分支,具有额外的替代酶,因此讨论了植物线粒体中呼吸超复合物出现的功能意义。

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