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Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome

We analyzed the kinetic properties of the metagenomic class B3 β-lactamase LRA-12, and determined its crystallographic structure in order to compare it with prevalent metallo-β-lactamases (MBLs) associated with clinical pathogens. We showed that LRA-12 confers extended-spectrum resistance on E. coli...

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Autores principales: Rodríguez, María Margarita, Herman, Raphaël, Ghiglione, Barbara, Kerff, Frédéric, D’Amico González, Gabriela, Bouillenne, Fabrice, Galleni, Moreno, Handelsman, Jo, Charlier, Paulette, Gutkind, Gabriel, Sauvage, Eric, Power, Pablo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5531557/
https://www.ncbi.nlm.nih.gov/pubmed/28750094
http://dx.doi.org/10.1371/journal.pone.0182043
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author Rodríguez, María Margarita
Herman, Raphaël
Ghiglione, Barbara
Kerff, Frédéric
D’Amico González, Gabriela
Bouillenne, Fabrice
Galleni, Moreno
Handelsman, Jo
Charlier, Paulette
Gutkind, Gabriel
Sauvage, Eric
Power, Pablo
author_facet Rodríguez, María Margarita
Herman, Raphaël
Ghiglione, Barbara
Kerff, Frédéric
D’Amico González, Gabriela
Bouillenne, Fabrice
Galleni, Moreno
Handelsman, Jo
Charlier, Paulette
Gutkind, Gabriel
Sauvage, Eric
Power, Pablo
author_sort Rodríguez, María Margarita
collection PubMed
description We analyzed the kinetic properties of the metagenomic class B3 β-lactamase LRA-12, and determined its crystallographic structure in order to compare it with prevalent metallo-β-lactamases (MBLs) associated with clinical pathogens. We showed that LRA-12 confers extended-spectrum resistance on E. coli when expressed from recombinant clones, and the MIC values for carbapenems were similar to those observed in enterobacteria expressing plasmid-borne MBLs such as VIM, IMP or NDM. This was in agreement with the strong carbapenemase activity displayed by LRA-12, similar to GOB β-lactamases. Among the chelating agents evaluated, dipicolinic acid inhibited the enzyme more strongly than EDTA, which required pre-incubation with the enzyme to achieve measurable inhibition. Structurally, LRA-12 contains the conserved main structural features of di-zinc class B β-lactamases, and presents unique structural signatures that differentiate this enzyme from others within the family: (i) two loops (α3-β7 and β11-α5) that could influence antibiotic entrance and remodeling of the active site cavity; (ii) a voluminous catalytic cavity probably responsible for the high hydrolytic efficiency of the enzyme; (iii) the absence of disulfide bridges; (iv) a unique Gln116 at metal-binding site 1; (v) a methionine residue at position 221that replaces Cys/Ser found in other B3 β-lactamases in a predominantly hydrophobic environment, likely playing a role in protein stability. The structure of LRA-12 indicates that MBLs exist in wild microbial populations in extreme environments, or environments with low anthropic impact, and under the appropriate antibiotic selective pressure could be captured and disseminated to pathogens.
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spelling pubmed-55315572017-08-07 Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome Rodríguez, María Margarita Herman, Raphaël Ghiglione, Barbara Kerff, Frédéric D’Amico González, Gabriela Bouillenne, Fabrice Galleni, Moreno Handelsman, Jo Charlier, Paulette Gutkind, Gabriel Sauvage, Eric Power, Pablo PLoS One Research Article We analyzed the kinetic properties of the metagenomic class B3 β-lactamase LRA-12, and determined its crystallographic structure in order to compare it with prevalent metallo-β-lactamases (MBLs) associated with clinical pathogens. We showed that LRA-12 confers extended-spectrum resistance on E. coli when expressed from recombinant clones, and the MIC values for carbapenems were similar to those observed in enterobacteria expressing plasmid-borne MBLs such as VIM, IMP or NDM. This was in agreement with the strong carbapenemase activity displayed by LRA-12, similar to GOB β-lactamases. Among the chelating agents evaluated, dipicolinic acid inhibited the enzyme more strongly than EDTA, which required pre-incubation with the enzyme to achieve measurable inhibition. Structurally, LRA-12 contains the conserved main structural features of di-zinc class B β-lactamases, and presents unique structural signatures that differentiate this enzyme from others within the family: (i) two loops (α3-β7 and β11-α5) that could influence antibiotic entrance and remodeling of the active site cavity; (ii) a voluminous catalytic cavity probably responsible for the high hydrolytic efficiency of the enzyme; (iii) the absence of disulfide bridges; (iv) a unique Gln116 at metal-binding site 1; (v) a methionine residue at position 221that replaces Cys/Ser found in other B3 β-lactamases in a predominantly hydrophobic environment, likely playing a role in protein stability. The structure of LRA-12 indicates that MBLs exist in wild microbial populations in extreme environments, or environments with low anthropic impact, and under the appropriate antibiotic selective pressure could be captured and disseminated to pathogens. Public Library of Science 2017-07-27 /pmc/articles/PMC5531557/ /pubmed/28750094 http://dx.doi.org/10.1371/journal.pone.0182043 Text en © 2017 Rodríguez et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rodríguez, María Margarita
Herman, Raphaël
Ghiglione, Barbara
Kerff, Frédéric
D’Amico González, Gabriela
Bouillenne, Fabrice
Galleni, Moreno
Handelsman, Jo
Charlier, Paulette
Gutkind, Gabriel
Sauvage, Eric
Power, Pablo
Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title_full Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title_fullStr Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title_full_unstemmed Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title_short Crystal structure and kinetic analysis of the class B3 di-zinc metallo-β-lactamase LRA-12 from an Alaskan soil metagenome
title_sort crystal structure and kinetic analysis of the class b3 di-zinc metallo-β-lactamase lra-12 from an alaskan soil metagenome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5531557/
https://www.ncbi.nlm.nih.gov/pubmed/28750094
http://dx.doi.org/10.1371/journal.pone.0182043
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