Abstract
Staphylococcus aureus isolates resistant to several antimicrobials have been gradually emerged since the beginning of the antibiotic era. Consequently, the first isolation of methicillin-resistant S. aureus occurred in 1960, which was described a few years later in Chile. Currently, S. aureus resistant to antistaphylococcal penicillins is endemic in Chilean hospitals and worldwide, being responsible for a high burden of morbidity and mortality. This resistance is mediated by the expression of a new transpeptidase, named PBP2a or PBP2’, which possesses lower affinity for the β-lactam antibiotics, allowing the synthesis of peptidoglycan even in presence of these antimicrobial agents. This new enzyme is encoded by the mecA gene, itself embedded in a chromosomal cassette displaying a genomic island structure, of which there are several types and subtypes. Methicillin resistance is mainly regulated by an induction mechanism activated in the presence of β-lactams, through a membrane receptor and a repressor of the gene expression. Although mec-independent methicillin resistance mechanisms have been described, they are clearly infrequent.
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Aguayo-Reyes, A., Quezada-Aguiluz, M., Mella, S., Riedel, G., Opazo-Capurro, A., Bello-Toledo, H., … González-Rocha, G. (2018). Bases moleculares de la resistencia a meticilina en Staphylococcus aureus. Revista Chilena de Infectologia, 35(1), 7–14. https://doi.org/10.4067/s0716-10182018000100007
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