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The yeast protein Mam33 functions in the assembly of the mitochondrial ribosome. | LitMetric

The yeast protein Mam33 functions in the assembly of the mitochondrial ribosome.

J Biol Chem

From the Department of Molecular Biology, Rowan University School of Osteopathic Medicine, Stratford, New Jersey 08084 and

Published: June 2019

AI Article Synopsis

  • Mitochondrial ribosomes mainly produce essential proteins for the respiratory chain, but the processes that help assemble them are not well understood.
  • A protein called Mam33 was identified as crucial for mitoribosome biogenesis; its absence leads to misassembled ribosomes and respiratory failure alongside other mutant ribosome assembly factors.
  • Research methods like sedimentation, affinity purifications, and proteomics revealed that Mam33 does not attach to mature ribosomes but instead binds directly to certain unassembled ribosomal proteins, suggesting it plays a key role in their proper assembly.

Article Abstract

Mitochondrial ribosomes are functionally specialized for the synthesis of several essential inner membrane proteins of the respiratory chain. Although remarkable progress has been made toward understanding the structure of mitoribosomes, the pathways and factors that facilitate their biogenesis remain largely unknown. The long unstructured domains of unassembled ribosomal proteins are highly prone to misfolding and often require dedicated chaperones to prevent aggregation. To date, chaperones that ensure safe delivery to the assembling ribosome have not been identified in the mitochondrion. In this study, a respiratory synthetic lethality screen revealed a role for an evolutionarily conserved mitochondrial matrix protein called Mam33 in mitoribosome biogenesis. We found that the absence of Mam33 results in misassembled, aggregated ribosomes and a respiratory lethal phenotype in combination with other ribosome-assembly mutants. Using sucrose gradient sedimentation, native affinity purifications, binding assays, and SILAC-based quantitative proteomics, we found that Mam33 does not associate with the mature mitoribosome, but directly binds a subset of unassembled large subunit proteins. Based on these data, we propose that Mam33 binds specific mitoribosomal proteins to ensure proper assembly.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6597815PMC
http://dx.doi.org/10.1074/jbc.RA119.008476DOI Listing

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