| Literature DB >> 24961372 |
Shanmugapriya Sothiselvam1, Bo Liu2, Wei Han2, Haripriya Ramu1, Dorota Klepacki1, Gemma Catherine Atkinson3, Age Brauer4, Maido Remm4, Tanel Tenson5, Klaus Schulten2, Nora Vázquez-Laslop6, Alexander S Mankin6.
Abstract
Translation arrest directed by nascent peptides and small cofactors controls expression of important bacterial and eukaryotic genes, including antibiotic resistance genes, activated by binding of macrolide drugs to the ribosome. Previous studies suggested that specific interactions between the nascent peptide and the antibiotic in the ribosomal exit tunnel play a central role in triggering ribosome stalling. However, here we show that macrolides arrest translation of the truncated ErmDL regulatory peptide when the nascent chain is only three amino acids and therefore is too short to be juxtaposed with the antibiotic. Biochemical probing and molecular dynamics simulations of erythromycin-bound ribosomes showed that the antibiotic in the tunnel allosterically alters the properties of the catalytic center, thereby predisposing the ribosome for halting translation of specific sequences. Our findings offer a new view on the role of small cofactors in the mechanism of translation arrest and reveal an allosteric link between the tunnel and the catalytic center of the ribosome.Entities:
Keywords: azithromycin; ketolides; solithromycin
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Year: 2014 PMID: 24961372 PMCID: PMC4103360 DOI: 10.1073/pnas.1403586111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205