Tanja Florin / Cristina Maracci / Michael Graf / Prajwal Karki / Dorota Klepacki / Otto Berninghausen / Roland Beckmann / Nora Vázquez-Laslop / Daniel N Wilson / Marina V Rodnina / Alexander S Mankin /
PubMed Abstract
Many antibiotics stop bacterial growth by inhibiting different steps of protein synthesis. However, no specific inhibitors of translation termination are known. Proline-rich antimicrobial peptides, a ...Many antibiotics stop bacterial growth by inhibiting different steps of protein synthesis. However, no specific inhibitors of translation termination are known. Proline-rich antimicrobial peptides, a component of the antibacterial defense system of multicellular organisms, interfere with bacterial growth by inhibiting translation. Here we show that Api137, a derivative of the insect-produced antimicrobial peptide apidaecin, arrests terminating ribosomes using a unique mechanism of action. Api137 binds to the Escherichia coli ribosome and traps release factor (RF) RF1 or RF2 subsequent to the release of the nascent polypeptide chain. A high-resolution cryo-EM structure of the ribosome complexed with RF1 and Api137 reveals the molecular interactions that lead to RF trapping. Api137-mediated depletion of the cellular pool of free release factors causes the majority of ribosomes to stall at stop codons before polypeptide release, thereby resulting in a global shutdown of translation termination.
EMDB-3730, PDB-5o2r: Cryo-EM structure of the proline-rich antimicrobial peptide Api137 bound to the terminating ribosome Method: EM (single particle) / Resolution: 3.4 Å
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