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  Defining the interactome of the human mitochondrial ribosome identifies SMIM4 and TMEM223 as respiratory chain assembly factors

Dennerlein, S., Poerschke, S., Oeljeklaus, S., Wang, C., Richter-Dennerlein, R., Sattmann, J., et al. (2021). Defining the interactome of the human mitochondrial ribosome identifies SMIM4 and TMEM223 as respiratory chain assembly factors. eLife, 10, e68213. doi:10.7554/eLife.68213.

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https://doi.org/10.7554/eLife.68213 (beliebiger Volltext)
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 Urheber:
Dennerlein, S., Autor
Poerschke, S., Autor
Oeljeklaus, S., Autor
Wang, C., Autor
Richter-Dennerlein, R., Autor
Sattmann, J., Autor
Bauermeister, D., Autor
Hanitsch, E., Autor
Stoldt, S., Autor
Langer, T.1, Autor           
Jakobs, S., Autor
Warscheid, B., Autor
Rehling, P., Autor
Affiliations:
1Department Langer - Mitochondrial Proteostasis, Max Planck Institute for Biology of Ageing, Max Planck Society, ou_3393994              

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Schlagwörter: mitochondria ribosome oxidative phosphorylation assembly translation
 Zusammenfassung: Human mitochondria express a genome that encodes thirteen core subunits of the oxidative phosphorylation system (OXPHOS). These proteins insert into the inner membrane co-translationally. Therefore, mitochondrial ribosomes engage with the OXA1L-insertase and membrane-associated proteins, which support membrane insertion of translation products and early assembly steps into OXPHOS complexes. To identify ribosome-associated biogenesis factors for the OXPHOS system, we purified ribosomes and associated proteins from mitochondria. We identified TMEM223 as a ribosome-associated protein involved in complex IV biogenesis. TMEM223 stimulates the translation of COX1 mRNA and is a constituent of early COX1 assembly intermediates. Moreover, we show that SMIM4 together with C12ORF73 interacts with newly synthesized cytochrome b to support initial steps of complex III biogenesis in complex with UQCC1 and UQCC2. Our analyses define the interactome of the human mitochondrial ribosome and reveal novel assembly factors for complex III and IV biogenesis that link early assembly stages to the translation machinery.

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 Datum: 2021-12-312021
 Publikationsstatus: Erschienen
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 Identifikatoren: DOI: 10.7554/eLife.68213
ISSN: 2050-084X
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Titel: eLife
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 10 Artikelnummer: - Start- / Endseite: e68213 Identifikator: -