Sulo Pavol, Spírek Mário, Soltésová Andrea, Marinoni Gaelle, Piskur Jure
Department of Biochemistry, Faculty of Natural Sciences, Comenius University, Mlynská Dolina, 84215 Bratislava, Slovak Republic.
FEMS Yeast Res. 2003 Oct;4(1):97-104. doi: 10.1016/S1567-1356(03)00109-0.
Optimal interactions among nuclear and mitochondria-coded proteins are required to assemble functional complexes of mitochondrial oxidative phosphorylation. The communication between the nuclear and mitochondrial genomes has been studied by transplacement of mitochondria from related species into mutants devoid of mitochondrial DNA (rho0). Recently we have reported that the mitochondria transferred from Saccharomyces paradoxus restored partially the respiration in Saccharomyces cerevisiae rho0 mutants. Here we present evidence that the S. cerevisiae mitochondria completely salvage from respiration deficiency, not only in conspecific isolates but also in S. paradoxus. The respiratory capacity in less-related species can be recovered exclusively in the presence of S. cerevisiae chromosomes. The efficiency of the re-established oxidative phosphorylation did not rely on the presence of introns in the S. cerevisiae mitochondrial DNA. Our results suggest that, apart from evolutionary distance, the direction of mitochondrial replacement could play a significant role in installing the complete (wild-type-like) interaction between mitochondria and nuclei from different species.
线粒体氧化磷酸化功能复合物的组装需要核编码蛋白与线粒体编码蛋白之间的最佳相互作用。通过将相关物种的线粒体转移到缺乏线粒体DNA的突变体(rho0)中,对核基因组与线粒体基因组之间的通讯进行了研究。最近我们报道,从奇异酵母转移来的线粒体部分恢复了酿酒酵母rho0突变体的呼吸作用。在此,我们提供证据表明,酿酒酵母线粒体不仅能完全挽救同种分离株的呼吸缺陷,也能挽救奇异酵母的呼吸缺陷。只有在酿酒酵母染色体存在的情况下,亲缘关系较远物种的呼吸能力才能恢复。重新建立的氧化磷酸化效率并不依赖于酿酒酵母线粒体DNA中内含子的存在。我们的结果表明,除了进化距离外,线粒体替代的方向在建立来自不同物种的线粒体与细胞核之间完整的(类似野生型)相互作用中可能起重要作用。