A roadmap for ribosome assembly in human mitochondria

Mitochondria contain dedicated ribosomes (mitoribosomes), which synthesize the mitochondrial-encoded core components of the oxidative phosphorylation complexes. The RNA and protein components of mitoribosomes are encoded on two different genomes (mitochondrial and nuclear) and are assembled into fun...

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Veröffentlicht in:Nature structural & molecular biology 2024-07, Vol.31 (12), p.1898-1908
Hauptverfasser: Lavdovskaia, Elena, Hanitsch, Elisa, Linden, Andreas, Pašen, Martin, Challa, Venkatapathi, Horokhovskyi, Yehor, Roetschke, Hanna P., Nadler, Franziska, Welp, Luisa, Steube, Emely, Heinrichs, Marleen, Mai, Mandy Mong-Quyen, Urlaub, Henning, Liepe, Juliane, Richter-Dennerlein, Ricarda
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Sprache:eng
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Zusammenfassung:Mitochondria contain dedicated ribosomes (mitoribosomes), which synthesize the mitochondrial-encoded core components of the oxidative phosphorylation complexes. The RNA and protein components of mitoribosomes are encoded on two different genomes (mitochondrial and nuclear) and are assembled into functional complexes with the help of dedicated factors inside the organelle. Defects in mitoribosome biogenesis are associated with severe human diseases, yet the molecular pathway of mitoribosome assembly remains poorly understood. Here, we applied a multidisciplinary approach combining biochemical isolation and analysis of native mitoribosomal assembly complexes with quantitative mass spectrometry and mathematical modeling to reconstitute the entire assembly pathway of the human mitoribosome. We show that, in contrast to its bacterial and cytosolic counterparts, human mitoribosome biogenesis involves the formation of ribosomal protein-only modules, which then assemble on the appropriate ribosomal RNA moiety in a coordinated fashion. The presence of excess protein-only modules primed for assembly rationalizes how mitochondria cope with the challenge of forming a protein-rich ribonucleoprotein complex of dual genetic origin. This study provides a comprehensive roadmap of mitoribosome biogenesis, from very early to late maturation steps, and highlights the evolutionary divergence from its bacterial ancestor. Lavdovskaia, Hanitsch, Linden et al. provide a comprehensive roadmap of mitoribosome biogenesis and establish that mitochondria use a unique pathway for the assembly of their translation machinery.
ISSN:1545-9993
1545-9985
1545-9985
DOI:10.1038/s41594-024-01356-w