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Dual effect of chloramphenicol peptides on ribosome inhibition.
- Source :
-
Amino acids [Amino Acids] 2017 May; Vol. 49 (5), pp. 995-1004. Date of Electronic Publication: 2017 Mar 10. - Publication Year :
- 2017
-
Abstract
- Chloramphenicol peptides were recently established as useful tools for probing nascent polypeptide chain interaction with the ribosome, either biochemically, or structurally. Here, we present a new 10mer chloramphenicol peptide, which exerts a dual inhibition effect on the ribosome function affecting two distinct areas of the ribosome, namely the peptidyl transferase center and the polypeptide exit tunnel. According to our data, the chloramphenicol peptide bound on the chloramphenicol binding site inhibits the formation of both acetyl-phenylalanine-puromycin and acetyl-lysine-puromycin, showing, however, a decreased peptidyl transferase inhibition compared to chloramphenicol-mediated inhibition per se. Additionally, we found that the same compound is a strong inhibitor of green fluorescent protein synthesis in a coupled in vitro transcription-translation assay as well as a potent inhibitor of lysine polymerization in a poly(A)-programmed ribosome, showing that an additional inhibitory effect may exist. Since chemical protection data supported the interaction of the antibiotic with bases A2058 and A2059 near the entrance of the tunnel, we concluded that the extra inhibition effect on the synthesis of longer peptides is coming from interactions of the peptide moiety of the drug with residues comprising the ribosomal tunnel, and by filling up the tunnel and blocking nascent chain progression through the restricted tunnel. Therefore, the dual interaction of the chloramphenicol peptide with the ribosome increases its inhibitory effect and opens a new window for improving the antimicrobial potency of classical antibiotics or designing new ones.
- Subjects :
- Amino Acid Sequence
Binding Sites
Chloramphenicol analogs & derivatives
Chloramphenicol chemical synthesis
Escherichia coli K12 chemistry
Escherichia coli K12 genetics
Escherichia coli K12 metabolism
Green Fluorescent Proteins antagonists & inhibitors
Green Fluorescent Proteins biosynthesis
Green Fluorescent Proteins genetics
Internal Ribosome Entry Sites drug effects
Models, Molecular
Peptides chemical synthesis
Peptidyl Transferases antagonists & inhibitors
Peptidyl Transferases genetics
Peptidyl Transferases metabolism
Poly A genetics
Poly A metabolism
Protein Binding
Protein Synthesis Inhibitors chemical synthesis
Puromycin pharmacology
Ribosomes genetics
Ribosomes metabolism
Chloramphenicol pharmacology
Fluorenes chemistry
Peptides pharmacology
Protein Biosynthesis drug effects
Protein Synthesis Inhibitors pharmacology
Ribosomes drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1438-2199
- Volume :
- 49
- Issue :
- 5
- Database :
- MEDLINE
- Journal :
- Amino acids
- Publication Type :
- Academic Journal
- Accession number :
- 28283906
- Full Text :
- https://doi.org/10.1007/s00726-017-2406-5