Braun Ralf J, Zischka Hans, Madeo Frank, Eisenberg Tobias, Wissing Silke, Büttner Sabrina, Engelhardt Silvia M, Büringer Dietmute, Ueffing Marius
GSF-National Research Center for Environment and Health, Institute of Human Genetics, Ingolstaedter Landstrasse 1, Munich-Neuherberg D-85764, Germany.
J Biol Chem. 2006 Sep 1;281(35):25757-67. doi: 10.1074/jbc.M513699200. Epub 2006 Jul 5.
Mutation in CDC48 (cdc48(S565G)), a gene essential in the endo-plasmic reticulum (ER)-associated protein degradation (ERAD) pathway, led to the discovery of apoptosis as a mechanism of cell death in the unicellular organism Saccharomyces cerevisiae. Elucidating Cdc48p-mediated apoptosis in yeast is of particular interest, because Cdc48p is the highly conserved yeast orthologue of human valosin-containing protein (VCP), a pathological effector for polyglutamine disorders and myopathies. Here we show distinct proteomic alterations in mitochondria in the cdc48(S565G) yeast strain. These observed molecular alterations can be related to functional impairment of these organelles as suggested by respiratory deficiency of cdc48(S565G) cells. Mitochondrial dysfunction in the cdc48(S565G) strain is accompanied by structural damage of mitochondria indicated by the accumulation of cytochrome c in the cytosol and mitochondrial enlargement. We demonstrate accumulation of reactive oxygen species produced predominantly by the cytochrome bc1 complex of the mitochondrial respiratory chain as suggested by the use of inhibitors of this complex. Concomitantly, emergence of caspase-like enzymatic activity occurs suggesting a role for caspases in the cell death process. These data strongly point for the first time to a mitochondrial involvement in Cdc48p/VCP-dependent apoptosis.
细胞分裂周期蛋白48(Cdc48,cdc48(S565G))基因发生突变,该基因在内质网相关蛋白降解(ERAD)途径中至关重要,这一突变促使人们发现凋亡是单细胞生物酿酒酵母中的一种细胞死亡机制。阐明酵母中Cdc48p介导的凋亡尤为重要,因为Cdc48p是人类含缬酪蛋白(VCP)的高度保守酵母同源物,而VCP是多聚谷氨酰胺疾病和肌病的病理效应因子。在此,我们展示了cdc48(S565G)酵母菌株中线粒体明显的蛋白质组学改变。如cdc48(S565G)细胞呼吸缺陷所示,这些观察到的分子改变可能与这些细胞器的功能受损有关。cdc48(S565G)菌株中的线粒体功能障碍伴随着线粒体结构损伤,表现为细胞溶质中细胞色素c的积累和线粒体肿大。正如使用该复合体抑制剂所表明的,我们证明了线粒体呼吸链细胞色素bc1复合体主要产生的活性氧的积累。同时,出现了半胱天冬酶样酶活性,表明半胱天冬酶在细胞死亡过程中发挥作用。这些数据首次有力地表明线粒体参与了Cdc48p/VCP依赖的凋亡。