Stojanovski Diana, Milenkovic Dusanka, Müller Judith M, Gabriel Kipros, Schulze-Specking Agnes, Baker Michael J, Ryan Michael T, Guiard Bernard, Pfanner Nikolaus, Chacinska Agnieszka
Institut für Biochemie und Molekularbiologie, Zentrum für Biochemie und Molekulare Zellforschung, Universität Freiburg, 79104 Freiburg, Germany.
J Cell Biol. 2008 Oct 20;183(2):195-202. doi: 10.1083/jcb.200804095. Epub 2008 Oct 13.
The biogenesis of mitochondrial intermembrane space proteins depends on specific machinery that transfers disulfide bonds to precursor proteins. The machinery shares features with protein relays for disulfide bond formation in the bacterial periplasm and endoplasmic reticulum. A disulfide-generating enzyme/sulfhydryl oxidase oxidizes a disulfide carrier protein, which in turn transfers a disulfide to the substrate protein. Current views suggest that the disulfide carrier alternates between binding to the oxidase and the substrate. We have analyzed the cooperation of the disulfide relay components during import of precursors into mitochondria and identified a ternary complex of all three components. The ternary complex represents a transient and intermediate step in the oxidation of intermembrane space precursors, where the oxidase Erv1 promotes disulfide transfer to the precursor while both oxidase and precursor are associated with the disulfide carrier Mia40.
线粒体膜间隙蛋白的生物合成依赖于将二硫键转移至前体蛋白的特定机制。该机制与细菌周质和内质网中用于二硫键形成的蛋白质传递体系具有共同特征。一种产生二硫键的酶/巯基氧化酶氧化二硫键载体蛋白,该载体蛋白进而将二硫键转移至底物蛋白。目前的观点认为,二硫键载体在与氧化酶和底物的结合之间交替。我们分析了前体蛋白导入线粒体过程中二硫键传递组分的协同作用,并鉴定出了所有三种组分的三元复合物。该三元复合物代表了膜间隙前体蛋白氧化过程中的一个短暂的中间步骤,其中氧化酶Erv1促进二硫键向前体蛋白的转移,而氧化酶和前体蛋白均与二硫键载体Mia40相关联。