Westermann B, Prip-Buus C, Neupert W, Schwarz E
Institut für Physiologische Chemie der Universität München, Germany.
EMBO J. 1995 Jul 17;14(14):3452-60. doi: 10.1002/j.1460-2075.1995.tb07351.x.
Mge1p, a mitochondrial GrpE homologue, has recently been identified in the yeast Saccharomyces cerevisiae and a role for this protein in precursor import has been reported. To dissect the molecular mechanism of Mge1p function, conditional mge1 mutants were constructed. Cells harbouring mutant mge1 accumulated precursor proteins at restrictive temperature. Both kinetics and efficiency of import were reduced in mitochondria isolated from strains possessing mutant mge1. Binding of mitochondrial-Hsp70 (mt-Hsp70) to incoming precursor proteins was abolished at restrictive temperature. Nucleotide-dependent dissociation of mt-Hsp70 from the import component MIM44 was reduced in mitochondria from mutant mge1 strains. Furthermore, at restrictive temperature an increase of incompletely folded, newly imported protein and enhanced protein aggregation was observed in mitochondria isolated from the mutant strains. We conclude that Mge1p exerts an essential function in import and folding of proteins by controlling the nucleotide-dependent binding of mt-Hsp70 to substrate proteins and the association of mt-Hsp70 with MIM44.
Mge1p是一种线粒体GrpE同源物,最近在酿酒酵母中被发现,并且已有报道称该蛋白在前体导入中发挥作用。为了剖析Mge1p功能的分子机制,构建了条件性mge1突变体。携带突变型mge1的细胞在限制温度下积累前体蛋白。从具有突变型mge1的菌株中分离出的线粒体中,导入的动力学和效率均降低。在限制温度下,线粒体Hsp70(mt-Hsp70)与进入的前体蛋白的结合被消除。在突变型mge1菌株的线粒体中,mt-Hsp70从导入成分MIM44上的核苷酸依赖性解离减少。此外,在限制温度下,从突变菌株中分离出的线粒体中观察到不完全折叠的新导入蛋白增加以及蛋白聚集增强。我们得出结论,Mge1p通过控制mt-Hsp70与底物蛋白的核苷酸依赖性结合以及mt-Hsp70与MIM44的结合,在蛋白质的导入和折叠中发挥重要作用。