Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.

The first line of defense by bacteria against β-lactam antibiotics is the expression of β-lactamases, which cleave the amide bond of the β-lactam ring. In the reaction of biapenem inactivation by B2 metallo β-lactamases (MβLs), after the β-lactam ring is opened, the carboxyl group generated by the h...

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Main Author: Domenico L Gatti
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3260057?pdf=render
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author Domenico L Gatti
author_facet Domenico L Gatti
author_sort Domenico L Gatti
collection DOAJ
description The first line of defense by bacteria against β-lactam antibiotics is the expression of β-lactamases, which cleave the amide bond of the β-lactam ring. In the reaction of biapenem inactivation by B2 metallo β-lactamases (MβLs), after the β-lactam ring is opened, the carboxyl group generated by the hydrolytic process and the hydroxyethyl group (common to all carbapenems) rotate around the C5-C6 bond, assuming a new position that allows a proton transfer from the hydroxyethyl group to C2, and a nucleophilic attack on C3 by the oxygen atom of the same side-chain. This process leads to the formation of a bicyclic compound, as originally observed in the X-ray structure of the metallo β-lactamase CphA in complex with product.QM/MM and metadynamics simulations of the post-hydrolysis steps in solution and in the enzyme reveal that while the rotation of the hydroxyethyl group can occur in solution or in the enzyme active site, formation of the bicyclic compound occurs primarily in solution, after which the final product binds back to the enzyme. The calculations also suggest that the rotation and cyclization steps can occur at a rate comparable to that observed experimentally for the enzymatic inactivation of biapenem only if the hydrolysis reaction leaves the N4 nitrogen of the β-lactam ring unprotonated.The calculations support the existence of a common mechanism (in which ionized N4 is the leaving group) for carbapenems hydrolysis in all MβLs, and suggest a possible revision of mechanisms for B2 MβLs in which the cleavage of the β-lactam ring is associated with or immediately followed by protonation of N4. The study also indicates that the bicyclic derivative of biapenem has significant affinity for B2 MβLs, and that it may be possible to obtain clinically effective inhibitors of these enzymes by modification of this lead compound.
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spelling doaj.art-a26e91bb611743c9aeb8dd9341ff8e8f2022-12-22T01:24:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0171e3007910.1371/journal.pone.0030079Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.Domenico L GattiThe first line of defense by bacteria against β-lactam antibiotics is the expression of β-lactamases, which cleave the amide bond of the β-lactam ring. In the reaction of biapenem inactivation by B2 metallo β-lactamases (MβLs), after the β-lactam ring is opened, the carboxyl group generated by the hydrolytic process and the hydroxyethyl group (common to all carbapenems) rotate around the C5-C6 bond, assuming a new position that allows a proton transfer from the hydroxyethyl group to C2, and a nucleophilic attack on C3 by the oxygen atom of the same side-chain. This process leads to the formation of a bicyclic compound, as originally observed in the X-ray structure of the metallo β-lactamase CphA in complex with product.QM/MM and metadynamics simulations of the post-hydrolysis steps in solution and in the enzyme reveal that while the rotation of the hydroxyethyl group can occur in solution or in the enzyme active site, formation of the bicyclic compound occurs primarily in solution, after which the final product binds back to the enzyme. The calculations also suggest that the rotation and cyclization steps can occur at a rate comparable to that observed experimentally for the enzymatic inactivation of biapenem only if the hydrolysis reaction leaves the N4 nitrogen of the β-lactam ring unprotonated.The calculations support the existence of a common mechanism (in which ionized N4 is the leaving group) for carbapenems hydrolysis in all MβLs, and suggest a possible revision of mechanisms for B2 MβLs in which the cleavage of the β-lactam ring is associated with or immediately followed by protonation of N4. The study also indicates that the bicyclic derivative of biapenem has significant affinity for B2 MβLs, and that it may be possible to obtain clinically effective inhibitors of these enzymes by modification of this lead compound.http://europepmc.org/articles/PMC3260057?pdf=render
spellingShingle Domenico L Gatti
Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
PLoS ONE
title Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
title_full Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
title_fullStr Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
title_full_unstemmed Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
title_short Biapenem inactivation by B2 metallo β-lactamases: energy landscape of the post-hydrolysis reactions.
title_sort biapenem inactivation by b2 metallo β lactamases energy landscape of the post hydrolysis reactions
url http://europepmc.org/articles/PMC3260057?pdf=render
work_keys_str_mv AT domenicolgatti biapeneminactivationbyb2metalloblactamasesenergylandscapeoftheposthydrolysisreactions