The macrolide–ketolide antibiotic binding site is formed by structures in domains II and V of 23S ribosomal RNA
Open Access
- 1 January 1999
- journal article
- research article
- Published by Wiley in Molecular Microbiology
- Vol. 31 (2) , 623-631
- https://doi.org/10.1046/j.1365-2958.1999.01202.x
Abstract
The macrolide antibiotic erythromycin interacts with bacterial 23S ribosomal RNA (rRNA) making contacts that are limited to hairpin 35 in domain II of the rRNA and to the peptidyl transferase loop in domain V. These two regions are probably folded close together in the 23S rRNA tertiary structure and form a binding pocket for macrolides and other drug types. Erythromycin has been derivatized by replacing the L‐cladinose moiety at position 3 by a keto group (forming the ketolide antibiotics) and by an alkyl‐aryl extension at positions 11/12 of the lactone ring. All the drugs footprint identically within the peptidyl transferase loop, giving protection against chemical modification at A2058, A2059 and G2505, and enhancing the accessibility of A2062. However, the ketolide derivatives bind to ribosomes with widely varying affinities compared with erythromycin. This variation correlates with differences in the hairpin 35 footprints. Erythromycin enhances the modification at position A752. Removal of cladinose lowers drug binding 70‐fold, with concomitant loss of the A752 footprint. However, the 11/12 extension strengthens binding 10‐fold, and position A752 becomes protected. These findings indicate how drug derivatization can improve the inhibition of bacteria that have macrolide resistance conferred by changes in the peptidyl transferase loop.Keywords
This publication has 31 references indexed in Scilit:
- Novel 3-deoxy-3-descladinosyl-6-O-methyl erythromycin a analogues. Synthesis and in vitro activityBioorganic & Medicinal Chemistry Letters, 1997
- A Sparsomycin-resistant Mutant ofHalobacterium salinariumLacks a Modification at Nucleotide U2603 in the Peptidyl Transferase Centre of 23 S rRNAJournal of Molecular Biology, 1996
- Fine Structure of the Peptidyl Transferase Centre on 23 S-like rRNAs Deduced from Chemical Probing of Antibiotic-Ribosome ComplexesJournal of Molecular Biology, 1995
- Erythromycin Binding is Reduced in Ribosomes with Conformational Alterations in the 23 S rRNA Peptidyl Transferase LoopJournal of Molecular Biology, 1993
- Binding sites of the antibiotics pactamycin and celesticetin on ribosomal RNAsBiochimie, 1991
- RIBOSOMAL RNA AND TRANSLATIONAnnual Review of Biochemistry, 1991
- Defining the Structural Requirements for a Helix in 23 S Ribosomal RNA that Confers Erythromycin ResistanceJournal of Molecular Biology, 1989
- Chloramphenicol, erythromycin, carbomycin and vernamycin B protect overlapping sites in the peptidyl transferase region of 23S ribosomal RNABiochimie, 1987
- A plasmid-coded and site-directed mutation in Escherichia coli 23S RNA that confers resistance to erythromycin: implications for the mechanism of action of erythromycinBiochimie, 1987
- STRUCTURE OF RIBOSOMAL RNAAnnual Review of Biochemistry, 1984