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Re-sensitization of imipenem-resistant Pseudomonas aeruginosa and restoration of cephalosporins susceptibility in Enterobacteriaceae by recombinant Esterase B. | LitMetric

AI Article Synopsis

  • Sphingobium sp. SM42 Esterase B (EstB) is an enzyme that helps break down dibutyl phthalate and enhances the effectiveness of certain antibiotics by modifying cephalosporins.
  • A similar estB gene found in Pseudomonas aeruginosa suggests that it may have been transferred between bacteria.
  • Introducing EstB into the periplasm of various Gram-negative bacteria, including P. aeruginosa and E. coli, increases their susceptibility to crucial antibiotics like carbapenems and cephalosporins, potentially overcoming antibiotic resistance.

Article Abstract

Sphingobium sp. SM42 Esterase B (EstB) is an enzyme with a dual function in degrading dibutyl phthalate and catalyzing the cleavage of the C-S bond in C3-sidechains of the dihydrothiazine ring of cephalosporins, generating more active β-lactam derivatives. Global prokaryotic genome analysis revealed the existence of a gene identical to estB in Pseudomonas aeruginosa strain PS1 suggesting a horizontal gene transfer event involving estB. To investigate the effect of ectopic expression of EstB in the periplasm of P. aeruginosa and several Enterobacteriaceae on antibiotic susceptibility levels, plasmid, pEstB, carrying a recombinant EstB fused with the signal peptide from Escherichia coli outer membrane protein A (OmpA) for periplasmic localization was constructed. The expression of EstB in the periplasm of P. aeruginosa and the Enterobacteriaceae: E. coli, Klebsiella pneumoniae, and Salmonella enterica serovar Typhi, increased susceptibility to carbapenems and cephalosporins. EstB reversed the imipenem resistance of P. aeruginosa ΔmexS and restored the changes in susceptibility to cephalosporins conferred by the downregulation of the outer membrane proteins, OmpK35 and OmpK36, in K. pneumoniae ΔramR-ompK36 to wild-type level. The introduction of EstB to the periplasmic space of Gram-negative bacteria can increase carbapenem and cephalosporin susceptibility.

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Source
http://dx.doi.org/10.1093/lambio/ovae118DOI Listing

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