Navet Rachel, Jarmuszkiewicz Wieslawa, Douette Pierre, Sluse-Goffart Claudine M, Sluse Francis E
Laboratory of Bioenergetics, Department of Life Sciences, Institute of Chemistry B6c, University of Liège, Sart Tilman, Liège, Belgium.
J Bioenerg Biomembr. 2004 Oct;36(5):471-9. doi: 10.1023/B:JOBB.0000047329.20371.bb.
We have previously shown that a kinetic interplay exists between the cytochrome pathway and the alternative oxidase in mitochondria from amoeba Acanthamoeba castellanii . Native interaction analyses using blue native gel electrophoresis coupled to denaturating electrophoresis and immunodetection have indicated associations between alternative oxidase and oxidative phosphorylation complexes in both amoeba and tomato mitochondria. These associations are dependent on the expression level of alternative oxidase according to the physiological state in both organisms. Alternative oxidase associates broadly with large complexes of the respiratory chain when it is expressed in large amount, i.e., in ripe tomato and exponentially growing amoeba. On the contrary, alternative oxidase interacts specifically with complex III even if expression of the oxidase is low, i.e., in green tomato and stationary phase amoeba. This specific interaction represents a higher level of regulation driven by protein-protein interactions leading to a direct kinetic interplay between the cytochrome pathway and alternative oxidase in both plant and amoeba mitochondria.
我们之前已经表明,在棘阿米巴属的变形虫线粒体中,细胞色素途径和交替氧化酶之间存在动力学相互作用。使用蓝色非变性凝胶电泳结合变性电泳和免疫检测的天然相互作用分析表明,交替氧化酶与变形虫和番茄线粒体中的氧化磷酸化复合物之间存在关联。根据这两种生物体的生理状态,这些关联取决于交替氧化酶的表达水平。当交替氧化酶大量表达时,即在成熟番茄和指数生长的变形虫中,它广泛地与呼吸链的大复合物结合。相反,即使氧化酶的表达水平较低,即在绿色番茄和静止期变形虫中,交替氧化酶也与复合物III特异性相互作用。这种特异性相互作用代表了由蛋白质-蛋白质相互作用驱动的更高水平的调节,导致植物和变形虫线粒体中细胞色素途径和交替氧化酶之间的直接动力学相互作用。