Kehrein Kirsten, Schilling Ramon, Möller-Hergt Braulio Vargas, Wurm Christian A, Jakobs Stefan, Lamkemeyer Tobias, Langer Thomas, Ott Martin
Center for Biomembrane Research, Department of Biochemistry and Biophysics, Stockholm University, 106 91 Stockholm, Sweden.
Department of NanoBiophotonics, Max Planck Institute for Biophysical Chemistry, 37070 Göttingen, Germany.
Cell Rep. 2015 Feb 17;10(6):843-853. doi: 10.1016/j.celrep.2015.01.012. Epub 2015 Feb 13.
Mitochondria contain their own genetic system that provides subunits of the complexes driving oxidative phosphorylation. A quarter of the mitochondrial proteome participates in gene expression, but how all these factors are orchestrated and spatially organized is currently unknown. Here, we established a method to purify and analyze native and intact complexes of mitochondrial ribosomes. Quantitative mass spectrometry revealed extensive interactions of ribosomes with factors involved in all the steps of posttranscriptional gene expression. These interactions result in large expressosome-like assemblies that we termed mitochondrial organization of gene expression (MIOREX) complexes. Superresolution microscopy revealed that most MIOREX complexes are evenly distributed throughout the mitochondrial network, whereas a subset is present as nucleoid-MIOREX complexes that unite the whole spectrum of organellar gene expression. Our work therefore provides a conceptual framework for the spatial organization of mitochondrial protein synthesis that likely developed to facilitate gene expression in the organelle.
线粒体拥有自身的遗传系统,该系统能提供驱动氧化磷酸化的复合物的亚基。线粒体蛋白质组的四分之一参与基因表达,但目前尚不清楚所有这些因子是如何被协调和进行空间组织的。在这里,我们建立了一种方法来纯化和分析线粒体核糖体的天然完整复合物。定量质谱分析揭示了核糖体与转录后基因表达所有步骤中涉及的因子之间存在广泛的相互作用。这些相互作用形成了类似大型表达体的组装体,我们将其称为线粒体基因表达组织(MIOREX)复合物。超分辨率显微镜显示,大多数MIOREX复合物均匀分布在线粒体网络中,而有一部分则以类核-MIOREX复合物的形式存在,它们整合了细胞器基因表达的全谱。因此,我们的工作为线粒体蛋白质合成的空间组织提供了一个概念框架,这种组织可能是为了促进细胞器中的基因表达而发展起来的。