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J Biomed Sci ; 22: 27, 2015 Apr 11.
Article in English | MEDLINE | ID: mdl-25888770

ABSTRACT

BACKGROUND: ESBL-producing bacteria are a clinical problem in the management of diseases caused by these pathogens. Worldwide, systemic infections with BL enzymes are evolving by mutations from classical bla genes in an intensified manner and they continue to be transferred across species. RESULTS: E.cloacae BF1417 isolate and its transconjugants gave positive results with the DDST, suggesting the presence of ESBL. Sequence analysis revealed a bla SHV-ESBL-type gene that differs from the gene encoding SHV-1 by five point mutations resulting in three amino acid substitutions in the coding region: C123R, I282T and L286P. This novel SHV-type enzyme was designated SHV-128. The conjugation tests and plasmid characterization showed that the bla SHV-128 is located on a conjugative plasmid IncFII type. Expression studies demonstrated that the above mutations participated in drug resistance, hydrolysis of extended spectrum ß-lactam and the change of the isoelectric point of the protein. CONCLUSION: These findings underscore the diversity by which antibiotic resistance can arise and the evolutionary potential of the clinically important ESBL enzymes. In addition, this study highlights the need for systematic surveillance of ESBL-mediated resistance as well as in clinical areas and communities.


Subject(s)
Anti-Bacterial Agents/pharmacology , Bacterial Proteins/genetics , Enterobacter cloacae/drug effects , Enterobacter cloacae/genetics , beta-Lactam Resistance , beta-Lactamases/genetics , beta-Lactams/pharmacology , Bacterial Proteins/metabolism , Base Sequence , Enterobacter cloacae/metabolism , Microbial Sensitivity Tests , Molecular Sequence Data , Polymerase Chain Reaction , Sequence Alignment , beta-Lactamases/metabolism
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