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A New Class of Genetic Element, Staphylococcus Cassette Chromosome <i>mec</i> , Encodes Methicillin Resistance in <i>Staphylococcus aureus</i>

Antimicrobial Agents and Chemotherapy · 2000 · Vol. 44(6) · pp. 1549–1555
Yuki KatayamaTeruyo ItoKeiichi Hiramatsu

Abstract

We have previously shown that the methicillin-resistance gene mecA of Staphylococcus aureus strain N315 is localized within a large (52-kb) DNA cassette (designated the staphylococcal cassette chromosome mec [SCCmec]) inserted in the chromosome. By sequence determination of the entire DNA, we identified two novel genes (designated cassette chromosome recombinase genes [ccrA and ccrB]) encoding polypeptides having a partial homology to recombinases of the invertase/resolvase family. The open reading frames were found to catalyze precise excision of the SCCmec from the methicillin-resistant S. aureus chromosome and site-specific as well as orientation-specific integration of the SCCmec into the S. aureus chromosome when introduced into the cells as a recombinant multicopy plasmid. We propose that SCCmec driven by a novel set of recombinases represents a new family of staphylococcal genomic elements.

Antimicrobial Resistance in StaphylococcusBacterial Genetics and BiotechnologyRNA and protein synthesis mechanismsRecombinaseTn3 transposonSCCmecStaphylococcus aureusPlasmidBiologyGeneticsChromosomeInsertion sequenceGene

MeSH terms

Amino Acid SequenceBacterial ProteinsMuramoylpentapeptide CarboxypeptidaseCarrier ProteinsChromosomes, BacterialHexosyltransferasesMethicillinMolecular Sequence DataPenicillinsPeptidyl TransferasesStaphylococcus aureusMethicillin ResistanceSequence AlignmentPenicillin-Binding Proteins

Funding

  • Ministry of Education, Culture, Sports, Science and Technology
Citations
1,019
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99%
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References
Principles and Practice of Infectious Diseases.
Annals of Internal Medicine · 1991 · 12,103 citations
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