Ponce-Rojas José Carlos, Avendaño-Monsalve Maria Clara, Yañez-Falcón Armando Roberto, Jaimes-Miranda Fabiola, Garay Erika, Torres-Quiroz Francisco, DeLuna Alexander, Funes Soledad
Departamento de Genética Molecular, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Mexico.
Unidad de Genómica Avanzada (Langebio), Centro de Investigación y de Estudios Avanzados del IPN, Irapuato, Mexico.
FEBS J. 2017 Mar;284(5):814-830. doi: 10.1111/febs.14024. Epub 2017 Feb 12.
The mitochondrial proteome is mostly composed of nuclear-encoded proteins. Such polypeptides are synthesized with signals that guide their intracellular transport to the surface of the organelle and later within the different mitochondrial subcompartments until they reach their functional destination. It has been suggested that the nascent-polypeptide associated complex (NAC) - a cytosolic chaperone that recognizes nascent chains on translationally active ribosomes - has a role in the import of nuclear-encoded mitochondrial proteins. However, the molecular mechanisms that regulate the NAC-mediated cotranslational import are still not clear. Here, we show that a particular NAC heterodimer formed by subunits α and β' in Saccharomyces cerevisiae is specifically involved in the process of mitochondrial import and functionally cooperates with Sam37, an outer membrane protein subunit of the sorting and assembly machinery complex. Mutants in both components display growth defects, incorrectly accumulate precursor forms of mitochondrial proteins in the cytosol, and have an altered mitochondrial protein content. We propose that αβ'-NAC and Sam37 are members of the system that recognizes mitochondrial proteins at early stages of their synthesis, escorting them to the import machinery of mitochondria.
线粒体蛋白质组主要由核编码蛋白组成。这类多肽在合成时带有信号,这些信号引导它们在细胞内运输到细胞器表面,随后进入不同的线粒体亚区室,直至到达其功能目的地。有人提出,新生多肽相关复合体(NAC)——一种识别翻译活跃核糖体上新生链的胞质伴侣蛋白——在核编码线粒体蛋白的导入过程中发挥作用。然而,调节NAC介导的共翻译导入的分子机制仍不清楚。在这里,我们表明酿酒酵母中由α和β'亚基形成的特定NAC异二聚体特别参与线粒体导入过程,并与分拣和组装机器复合体的外膜蛋白亚基Sam37在功能上协同作用。这两个组分的突变体均表现出生长缺陷,在细胞质中错误地积累线粒体蛋白的前体形式,并且线粒体蛋白含量发生改变。我们提出,αβ'-NAC和Sam37是在合成早期识别线粒体蛋白并将它们护送至线粒体导入机器的系统成员。