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Kinetic and Structural Characterization of the First B3 Metallo-ß-Lactamase with an Active-Site Glutamic Acid.
Wilson, Liam A; Knaven, Esmée G; Morris, Marc T; Monteiro Pedroso, Marcelo; Schofield, Christopher J; Brück, Thomas B; Boden, Mikael; Waite, David W; Hugenholtz, Philip; Guddat, Luke; Schenk, Gerhard.
Afiliação
  • Wilson LA; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Knaven EG; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Morris MT; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Monteiro Pedroso M; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Schofield CJ; Department of Chemistry and Ineos Oxford Institute for Antimicrobial Research, Chemistry Research Laboratory, University of Oxfordgrid.4991.5, Oxford, United Kingdom.
  • Brück TB; Department of Chemistry, Technical University of Munichgrid.6936.a, Garching, Germany.
  • Boden M; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Waite DW; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Hugenholtz P; Australian Centre for Ecogenomics, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Guddat L; School of Chemistry and Molecular Biosciences, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
  • Schenk G; Australian Centre for Ecogenomics, The University of Queenslandgrid.1003.2, St. Lucia, QLD, Brisbane, Australia.
Antimicrob Agents Chemother ; 65(10): e0093621, 2021 09 17.
Article em En | MEDLINE | ID: mdl-34310207
ABSTRACT
The structural diversity in metallo-ß-lactamases (MBLs), especially in the vicinity of the active site, has been a major hurdle in the development of clinically effective inhibitors. Representatives from three variants of the B3 MBL subclass, containing either the canonical HHH/DHH active-site motif (present in the majority of MBLs in this subclass) or the QHH/DHH (B3-Q) or HRH/DQK (B3-RQK) variations, were reported previously. Here, we describe the structure and kinetic properties of the first example (SIE-1) of a fourth variant containing the EHH/DHH active-site motif (B3-E). SIE-1 was identified in the hexachlorocyclohexane-degrading bacterium Sphingobium indicum, and kinetic analyses demonstrate that although it is active against a wide range of antibiotics, its efficiency is lower than that of other B3 MBLs but has increased efficiency toward cephalosporins relative to other ß-lactam substrates. The overall fold of SIE-1 is characteristic of the MBLs; the notable variation is observed in the Zn1 site due to the replacement of the canonical His116 by a glutamate. The unusual preference of SIE-1 for cephalosporins and its occurrence in a widespread environmental organism suggest the scope for increased MBL-mediated ß-lactam resistance. Thus, it is relevant to include SIE-1 in MBL inhibitor design studies to widen the therapeutic scope of much needed antiresistance drugs.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Beta-Lactamases / Sphingomonadaceae Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Beta-Lactamases / Sphingomonadaceae Idioma: En Ano de publicação: 2021 Tipo de documento: Article