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Human G-proteins ObgH1 and Mtg1 associate with the large mitochondrial ribosome subunit and are involved in translation and assembly of respiratory complexes

机译:人类G蛋白ObgH1和Mtg1与线粒体核糖体大亚基相关并参与呼吸复合体的翻译和组装

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摘要

The bacterial homologues of ObgH1 and Mtg1, ObgE and RbgA, respectively, have been suggested to be involved in the assembly of large ribosomal subunits. We sought to elucidate the functions of ObgH1 and Mtg1 in ribosome biogenesis in human mitochondria. ObgH1 and Mtg1 are localized in mitochondria in association with the inner membrane, and are exposed on the matrix side. Mtg1 and ObgH1 specifically associate with the large subunit of the mitochondrial ribosome in GTP-dependent manner. The large ribosomal subunit stimulated the GTPase activity of Mtg1, whereas only the intrinsic GTPase activity was detectable with ObgH1. The knockdown of Mtg1 decreased the overall mitochondrial translation activity, and caused defects in the formation of respiratory complexes. On the other hand, the depletion of ObgH1 led to the specific activation of the translation of subunits of Complex V, and disrupted its proper formation. Our results suggested that Mtg1 and ObgH1 function with the large subunit of the mitochondrial ribosome, and are also involved in both the translation and assembly of respiratory complexes. The fine coordination of ribosome assembly, translation and respiratory complex formation in mammalian mitochondria is affirmed.
机译:有人建议ObgH1和Mtg1,ObgE和RbgA的细菌同源物分别参与大核糖体亚基的组装。我们试图阐明ObgH1和Mtg1在人类线粒体的核糖体生物发生中的功能。 ObgH1和Mtg1位于与内膜相关的线粒体中,并暴露在基质侧。 Mtg1和ObgH1以依赖GTP的方式与线粒体核糖体的大亚基特异性结合。大的核糖体亚基刺激了Mtg1的GTPase活性,而只有固有的GTPase活性被ObgH1检测到。击倒的Mtg1降低了整体线粒体的翻译活性,并导致呼吸复合物形成的缺陷。另一方面,ObgH1的消耗导致复合物V亚基翻译的特异性激活,并破坏了其正确形成。我们的结果表明Mtg1和ObgH1与线粒体核糖体的大亚基一起起作用,并且还参与呼吸复合体的翻译和组装。确认了哺乳动物线粒体中核糖体组装,翻译和呼吸复合物形成的良好协调。

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