Zischka Hans, Braun Ralf J, Marantidis Enrico P, Büringer Dietmute, Bornhövd Carsten, Hauck Stefanie M, Demmer Oliver, Gloeckner Christian J, Reichert Andreas S, Madeo Frank, Ueffing Marius
Institutes of Human Genetics and Toxicology, GSF-National Research Center for Environment and Health, 85764 Munich-Neuherberg, Germany.
Mol Cell Proteomics. 2006 Nov;5(11):2185-200. doi: 10.1074/mcp.T600018-MCP200. Epub 2006 Aug 17.
One major problem concerning the electrophoresis of mitochondria is the heterogeneity of mitochondrial appearance especially under pathological conditions. We show here the use of zone electrophoresis in a free flow electrophoresis device (ZE-FFE) as an analytical sensor to discriminate between different yeast mitochondrial populations. Impairment of the structural properties of the organelles by hyperosmotic stress resulted in broad separation profiles. Conversely untreated mitochondria gave rise to homogeneous populations reflected by sharp separation profiles. Yeast mitochondria with altered respiratory activity accompanied by a different outer membrane proteome composition could be discriminated based on electrophoretic deflection. Proteolysis of the mitochondrial surface proteome and the deletion of a single major protein species of the mitochondrial outer membrane altered the ZE-FFE deflection of these organelles. To demonstrate the usefulness of ZE-FFE for the analysis of mitochondria associated with pathological processes, we analyzed mitochondrial fractions from an apoptotic yeast strain. The cdc48(S565G) strain carries a mutation in the CDC48 gene that is an essential participant in the endoplasmic reticulum-associated protein degradation pathway. Mutant cells accumulate polyubiquitinated proteins in microsomal and mitochondrial extracts. Subsequent ZE-FFE characterization could distinguish a mitochondrial subfraction specifically enriched with polyubiquitinated proteins from the majority of non-affected mitochondria. This result demonstrates that ZE-FFE may give important information on the specific properties of subpopulations of a mitochondrial preparation allowing a further detailed functional analysis.
线粒体电泳面临的一个主要问题是线粒体外观的异质性,尤其是在病理条件下。我们在此展示了在自由流动电泳装置(ZE-FFE)中使用区带电泳作为分析传感器,以区分不同的酵母线粒体群体。高渗胁迫对细胞器结构特性的损害导致了较宽的分离图谱。相反,未经处理的线粒体产生了由尖锐分离图谱反映的均匀群体。具有改变的呼吸活性并伴有不同外膜蛋白质组组成的酵母线粒体可以基于电泳偏转进行区分。线粒体表面蛋白质组的蛋白水解以及线粒体外膜单一主要蛋白质种类的缺失改变了这些细胞器的ZE-FFE偏转。为了证明ZE-FFE在分析与病理过程相关的线粒体方面的有用性,我们分析了来自凋亡酵母菌株的线粒体组分。cdc48(S565G)菌株在CDC48基因中携带一个突变,该基因是内质网相关蛋白降解途径中的重要参与者。突变细胞在微粒体和线粒体提取物中积累多聚泛素化蛋白。随后的ZE-FFE表征可以将特异性富含多聚泛素化蛋白的线粒体亚组分与大多数未受影响的线粒体区分开来。这一结果表明,ZE-FFE可能为线粒体制剂亚群的特定特性提供重要信息,从而允许进行进一步详细的功能分析。