Nübel Esther, Wittig Ilka, Kerscher Stefan, Brandt Ulrich, Schägger Hermann
Cluster of Excellence Macromolecular Complexes, Molekulare Bioenergetik, Zentrum der Biologischen Chemie, Goethe-Universität Frankfurt, Frankfurt, Germany.
Proteomics. 2009 May;9(9):2408-18. doi: 10.1002/pmic.200800632.
Mitochondria of the strictly aerobic yeast Yarrowia lipolytica contain respiratory complex I with close functional and structural similarity to the mammalian enzyme. Unlike mammalian mitochondria, however, Yarrowia mitochondria have been thought not to contain supercomplexes. Here, we identify respiratory supercomplexes composed of complexes I, III and IV also in Y. lipolytica. Evidence for dimeric complex I suggests further association of respiratory supercomplexes into respiratory strings or patches. Similar supercomplex organization in Yarrowia and mammalian mitochondria further makes this aerobic yeast a useful model for the human oxidative phosphorylation system. The analysis of supercomplexes and their constituent complexes was made possible by 2-D native electrophoresis, i.e. by using native electrophoresis for both dimensions. Digitonin and blue-native electrophoresis were generally applied for the initial separation of supercomplexes followed by less mild native electrophoresis variants in the second dimension to release the individual complexes from the supercomplexes. Such 2-D native systems are useful means to identify the constituent proteins and their copy numbers in detergent-labile physiological assemblies, since they can reduce the complexity of supramolecular systems to the level of individual complexes.
严格需氧的解脂耶氏酵母的线粒体含有呼吸链复合体I,其在功能和结构上与哺乳动物的该酶极为相似。然而,与哺乳动物线粒体不同的是,此前认为解脂耶氏酵母线粒体不含超级复合体。在此,我们发现解脂耶氏酵母中也存在由复合体I、III和IV组成的呼吸超级复合体。二聚体复合体I的证据表明呼吸超级复合体进一步缔合形成呼吸链或呼吸斑。解脂耶氏酵母和哺乳动物线粒体中相似的超级复合体组织,进一步使这种需氧酵母成为研究人类氧化磷酸化系统的有用模型。通过二维非变性电泳,即二维均采用非变性电泳,得以对超级复合体及其组成复合体进行分析。通常先用洋地黄皂苷和蓝色非变性电泳初步分离超级复合体,然后在第二维采用温和性稍低的非变性电泳变体,从超级复合体中释放出各个复合体。此类二维非变性系统是鉴定去污剂不稳定的生理装配体中组成蛋白及其拷贝数的有用手段,因为它们可将超分子系统的复杂性降低至单个复合体的水平。