Abstract
Forty "two-step" and 13 "three-step" tiamulin-resistant mutants of Escherichia coli PR11 were isolated and tested for alteration of ribosomal proteins. Mutants with altered ribosomal proteins S10, S19, L3, and L4 were detected. The S19, L3, and L4 mutants were studied in detail. The L3 and L4 mutations did not segregate from the resistance character in transductional crosses and therefore seem to be responsible for the resistance. Extracts of these mutants also exhibited an increased in vitro resistance to tiamulin in the polyuridylic acid and phage R17 RNA-dependent polypeptide synthesis systems, and it was demonstrated that this was a property of the 50S subunit. In the case of the S19 mutant, genetic analysis showed segregation between resistance and the S19 alteration and therefore indicated that mutation of a protein other than S19 was responsible for the resistance phenotype. The isolated ribosomes of the S19, L3, and L4 mutants bound radioactive tiamulin with a considerably reduced strength when compared with those of wild-type cells. The association constants were lower by factors ranging from approximately 20 to 200. When heated in the presence of ammonium chloride, these ribosomes partially regained their avidity for tiamulin.
MeSH Terms
Bacterial Proteins/genetics
Diterpenes/metabolism,pharmacology
Drug Resistance, Microbial
Escherichia coli/drug effects,genetics
Genes, Bacterial
Mutation
Ribosomal Proteins/genetics
Ribosomes/metabolism
Transduction, Genetic
Chemicals
Bacterial Proteins
Diterpenes
Ribosomal Proteins
tiamulin
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Böck A
Turnowsky F
Högenauer G
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