Home LiteratureArticle Details
PMID: 11677599 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Structural basis for the interaction of antibiotics with the peptidyl transferase centre in eubacteria.

Nature ·Vol. 413 ·No. 6858 ·2001-10-25 ·Pages 814-21

Schlünzen F, Zarivach R, Harms J, Bashan A, Tocilj A, Albrecht R, Yonath A, Franceschi F

Abstract

Ribosomes, the site of protein synthesis, are a major target for natural and synthetic antibiotics. Detailed knowledge of antibiotic binding sites is central to understanding the mechanisms of drug action. Conversely, drugs are excellent tools for studying the ribosome function. To elucidate the structural basis of ribosome-antibiotic interactions, we determined the high-resolution X-ray structures of the 50S ribosomal subunit of the eubacterium Deinococcus radiodurans, complexed with the clinically relevant antibiotics chloramphenicol, clindamycin and the three macrolides erythromycin, clarithromycin and roxithromycin. We found that antibiotic binding sites are composed exclusively of segments of 23S ribosomal RNA at the peptidyl transferase cavity and do not involve any interaction of the drugs with ribosomal proteins. Here we report the details of antibiotic interactions with the components of their binding sites. Our results also show the importance of putative Mg+2 ions for the binding of some drugs. This structural analysis should facilitate rational drug design.

MeSH Terms
Anti-Bacterial Agents/metabolism Bacteria/metabolism Base Sequence Binding Sites Chloramphenicol/metabolism Crystallography, X-Ray Macrolides/metabolism Magnesium/metabolism Models, Molecular Molecular Sequence Data Peptidyl Transferases/metabolism Protein Conformation RNA, Bacterial/metabolism RNA, Ribosomal, 23S/metabolism Ribosomal Proteins/metabolism Ribosomes/metabolism Structure-Activity Relationship
Chemicals
Anti-Bacterial Agents Macrolides RNA, Bacterial RNA, Ribosomal, 23S Ribosomal Proteins Chloramphenicol Peptidyl Transferases Magnesium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Schlünzen F
Max-Planck-Research, Unit for Ribosomal Structure, Notkestrasse 85, 22603 Hamburg, Germany.
Zarivach R
Harms J
Bashan A
Tocilj A
Albrecht R
Yonath A
Franceschi F
Article Info
Journal
Nature
Abbr.
Nature
ISSN
0028-0836
Published
2001-10-25
Pages
814-21
Language
English
Region
England
NLM ID
0410462
Subset
IM
Databases
PDB
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