Mechanism of membrane-tethered mitochondrial protein synthesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33602856.
- Also identified by DOI 10.1126/science.abe0763 and PMC identifier 7610362.
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Abstract
Mitochondrial ribosomes (mitoribosomes) are tethered to the mitochondrial inner membrane to facilitate the cotranslational membrane insertion of the synthesized proteins. We report cryo-electron microscopy structures of human mitoribosomes with nascent polypeptide, bound to the insertase oxidase assembly 1-like (OXA1L) through three distinct contact sites. OXA1L binding is correlated with a series of conformational changes in the mitoribosomal large subunit that catalyze the delivery of newly synthesized polypeptides. The mechanism relies on the folding of mL45 inside the exit tunnel, forming two specific constriction sites that would limit helix formation of the nascent chain. A gap is formed between the exit and the membrane, making the newly synthesized proteins accessible. Our data elucidate the basis by which mitoribosomes interact with the OXA1L insertase to couple protein synthesis and membrane delivery.
Medical subject headings
- Electron Transport Complex IV
- Membrane Proteins
- Mitochondrial Proteins
- Mitochondrial Ribosomes
- Nuclear Proteins
- Protein Biosynthesis