Antimicrobial Agents and Chemotherapy · 2015 · 20 citations · 50 references
Microbial PathogensBlaa InductionGeneticsBacteriologyMolecular BiologyBlaa ExpressionPbp1b/lpob Are InvolvedMolecular GeneticsBacterial PathogensDrug ResistanceShewanella OneidensisAntibacterial MechanismsAntimicrobial ResistanceBiochemistryVirulence FactorMolecular MicrobiologyClinical MicrobiologyBiologyAntimicrobial Resistance GeneBlaa GeneAntibioticsNatural SciencesPathogenesisMicrobiologyMedicineMicrobial Genetics
β-Lactamase production is one of the most important strategies for Gram-negative bacteria to combat β-lactam antibiotics. Studies of the regulation of β-lactamase expression have largely been focused on the class C β-lactamase AmpC, whose induction by β-lactams requires LysR-type regulator AmpR and permease AmpG-dependent peptidoglycan recycling intermediates. In Shewanella, which is ubiquitous in aquatic environments and is a reservoir for antibiotic resistance, production of the class D β-lactamase BlaA confers bacteria with natural resistance to many β-lactams. Expression of the blaA gene in the genus representative Shewanella oneidensis is distinct from the AmpC paradigm because of the lack of an AmpR homologue and the presence of an additional AmpG-independent regulatory pathway. In this study, using transposon mutagenesis, we identify proteins that are involved in blaA regulation. Inactivation of mrcA and lpoA, which encode penicillin binding protein 1a (PBP1a) and its lipoprotein cofactor, LpoA, respectively, drastically enhances blaA expression in the absence of β-lactams. Although PBP1b and its cognate, LpoB, also exist in S. oneidensis, their roles in blaA induction are dispensable. We further show that the mrcA-mediated blaA expression is independent of AmpG.
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Genome sequence of the dissimilatory metal ion–reducing bacterium Shewanella oneidensis
John F. Heidelberg, Ian T. Paulsen, Eric Gaidos et al. · Nature Biotechnology · 2002 · 846 citations · Full text
Regulation of Peptidoglycan Synthesis by Outer-Membrane Proteins
Athanasios Typas, Manuel Banzhaf, H. Bart van den Berg van Saparoea et al. · Cell · 2010 · 375 citations · Full text