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PMID: 1725100 Published · ppublish English Journal Article

Molecular basis of tetracycline action: identification of analogs whose primary target is not the bacterial ribosome.

Antimicrobial agents and chemotherapy ·Vol. 35 ·No. 11 ·1991-11-00 ·Pages 2306-11

Rasmussen B, Noller HF, Daubresse G, Oliva B, Misulovin Z, Rothstein DM, Ellestad GA, Gluzman Y, Tally FP, Chopra I

Abstract

Tetracycline analogs fell into two classes on the basis of their mode of action. Tetracycline, chlortetracycline, minocycline, doxycycline, and 6-demethyl-6-deoxytetracycline inhibited cell-free translation directed by either Escherichia coli or Bacillus subtilis extracts. A second class of analogs tested, including chelocardin, anhydrotetracycline, 6-thiatetracycline, anhydrochlortetracycline, and 4-epi-anhydrochlortetracycline, failed to inhibit protein synthesis in vitro or were very poor inhibitors. Tetracyclines of the second class, however, rapidly inhibited the in vivo incorporation of precursors into DNA and RNA as well as protein. The class 2 compounds therefore have a mode of action that is entirely distinct from the class 1 compounds, such as tetracycline that are used clinically. Although tetracyclines of the second class entered the cytoplasm, the ability of these analogs to inhibit macromolecular synthesis suggests that the cytoplasmic membrane is their primary site of action. The interaction of class 1 and class 2 tetracyclines with ribosomes was studied by examining their effects on the chemical reactivity of bases in 16S rRNA to dimethyl sulfate. Class 1 analogs affected the reactivity of bases to dimethyl sulfate. The response with class 2 tetracyclines varied, with some analogs affecting reactivity and others (chelocardin and 4-epi-anhydrotetracycline) not.

MeSH Terms
Bacteria/drug effects,ultrastructure Bacterial Proteins/biosynthesis Cytoplasm/drug effects,metabolism DNA, Bacterial/biosynthesis Galactosidases/biosynthesis Membranes/drug effects Plasmids Protein Biosynthesis RNA, Bacterial/biosynthesis RNA, Ribosomal/biosynthesis Ribosomes/drug effects Tetracyclines/metabolism,pharmacology
Chemicals
Bacterial Proteins DNA, Bacterial RNA, Bacterial RNA, Ribosomal Tetracyclines Galactosidases chelocardin
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Rasmussen B
Infectious Disease/Molecular Biology Research Section, American Cyanamid, Lederle Laboratories, Pearl River, New York 10965.
Noller H F
Daubresse G
Oliva B
Misulovin Z
Rothstein D M
Ellestad G A
Gluzman Y
Tally F P
Chopra I
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12 references, click to expand
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Article Info
Journal
Antimicrobial agents and chemotherapy
Abbr.
Antimicrob Agents Chemother
ISSN
0066-4804
Published
1991-11-00
Pages
2306-11
Language
English
Region
United States
NLM ID
0315061
PMCID
PMC245376
Subset
IM
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