Mechanism of chloramphenicol resistance in Bacillus badius 211.

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Mechanism of chloramphenicol resistance in Bacillus badius 211.

Six strains of chloramphenicol (CM)-resistant endospore-forming bacteria, which can grow in the presence of 100 microgram/ml of CM, were isolated and identified as Bacillus badius. Mechanism of CM-resistance in one of the isolated strains, Bacillus badius 211, was investigated. No inactivation of CM was demonstrated when the strain was grown in nutrient broth containing 100 microgram/ml of CM, ...

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New chloramphenicol resistance locus in Bacillus subtilis.

A spontaneously occurring, noninducible, chloramphenicol-resistant mutant of Bacillus subtilis 168 has a mutation (cam-2) which maps in the ribosomal protein region of the chromosome near dal. Its presence does not confer dependence on chloramphenicol. Ribosomes of the cam-2 strain remained sensitive to chloramphenicol in in vitro protein synthesis. No chloramphenicol acetyltransferase activity...

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Mechanism of Chloramphenicol Resistance in Staphylococcus epidermidis.

The mechanism of chloramphenicol resistance in several multiple-resistant Staphylococcus epidermidis strains has been studied and shown to be due to the presence of the enzyme, chloramphenicol acetyltransferase. As with S. aureus, the inactivating enzyme in S. epidermidis appears to be the product of a structural gene on the chloramphenicol plasmid because resistance and enzyme activity are con...

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Chloramphenicol induces translation of the mRNA for a chloramphenicol-resistance gene in Bacillus subtilis.

cat-86 is a plasmid gene specifying chloramphenicol-inducible chloramphenicol acetyltransferase activity in Bacillus subtilis. Inducibility has been suggested to result primarily from activation of the translation of cat-86 mRNA by subinhibitory levels of chloramphenicol. To directly test the involvement of transcription in cat-86 induction, the gene was transcriptionally activated with a stron...

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ژورنال

عنوان ژورنال: The Journal of Antibiotics

سال: 1978

ISSN: 0021-8820,1881-1469

DOI: 10.7164/antibiotics.31.1155