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PMID: 7051226 Published · ppublish English Journal Article

Molecular mechanisms of resistance to trimethoprim.

Reviews of infectious diseases ·Vol. 4 ·No. 2 ·1982-00-00 ·Pages 246-54

Burchall JJ, Elwell LP, Fling ME

Abstract

Resistance to inhibitors of dihydrofolate reductase arises from a variety of mechanisms involving enzyme alteration, cellular impermeability, enzyme overproduction, inhibitor modification, and loss of binding capacity. The mechanism of greatest clinical importance is the production of plasmid-encoded, trimethoprim-resistant forms of dihydrofolate reductase. At least two different types of these enzymes have been documented. The trimethoprim-resistant reductases differ from all other dihydrofolate reductases in molecular weight, subunit structure, kinetic properties, and binding of inhibitors. Colony hybridization techniques, developed for the detection of plasmid DNA coding for trimethoprim-resistant reductases, enable researchers to evaluate the prevalence and distribution of plasmid-borne resistance. Preliminary results obtained with a series of enzymatically characterized clinical isolates suggest that the colony hybridization technique may provide a convenient epidemiological tool for monitoring the dissemination of plasmid-borne resistance to trimethoprim.

MeSH Terms
Autoradiography Bacteria/drug effects,genetics Bacterial Infections/microbiology DNA, Bacterial/metabolism Drug Resistance, Microbial Escherichia coli/drug effects Folic Acid Antagonists Genes, Bacterial/drug effects Humans R Factors Trimethoprim/pharmacology
Chemicals
DNA, Bacterial Folic Acid Antagonists Trimethoprim
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Burchall J J
Elwell L P
Fling M E
Article Info
Journal
Reviews of infectious diseases
Abbr.
Rev Infect Dis
ISSN
0162-0886
Published
1982-00-00
Pages
246-54
Language
English
Region
United States
NLM ID
7905878
Subset
IM
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