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C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation

Acinetobacter baumannii has become a major nosocomial pathogen, as it is often multidrug-resistant, which results in infections characterized by high mortality rates. The bacterium achieves high levels of resistance to β-lactam antibiotics by producing β-lactamases, enzymes which destroy these valua...

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Autores principales: Stewart, Nichole K., Toth, Marta, Alqurafi, Maha A., Chai, Weirui, Nguyen, Thu Q., Quan, Pojun, Lee, Mijoon, Buynak, John D., Smith, Clyde A., Vakulenko, Sergei B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239083/
https://www.ncbi.nlm.nih.gov/pubmed/35420470
http://dx.doi.org/10.1128/mbio.00367-22
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author Stewart, Nichole K.
Toth, Marta
Alqurafi, Maha A.
Chai, Weirui
Nguyen, Thu Q.
Quan, Pojun
Lee, Mijoon
Buynak, John D.
Smith, Clyde A.
Vakulenko, Sergei B.
author_facet Stewart, Nichole K.
Toth, Marta
Alqurafi, Maha A.
Chai, Weirui
Nguyen, Thu Q.
Quan, Pojun
Lee, Mijoon
Buynak, John D.
Smith, Clyde A.
Vakulenko, Sergei B.
author_sort Stewart, Nichole K.
collection PubMed
description Acinetobacter baumannii has become a major nosocomial pathogen, as it is often multidrug-resistant, which results in infections characterized by high mortality rates. The bacterium achieves high levels of resistance to β-lactam antibiotics by producing β-lactamases, enzymes which destroy these valuable agents. Historically, the carbapenem family of β-lactam antibiotics have been the drugs of choice for treating A. baumannii infections. However, their effectiveness has been significantly diminished due to the pathogen’s production of carbapenem-hydrolyzing class D β-lactamases (CHDLs); thus, new antibiotics and inhibitors of these enzymes are urgently needed. Here, we describe a new carbapenem antibiotic, MA-1-206, in which the canonical C6 hydroxyethyl group has been replaced with hydroxymethyl. The antimicrobial susceptibility studies presented here demonstrated that this compound is more potent than meropenem and imipenem against A. baumannii producing OXA-23, the most prevalent CHDL of this pathogen, and also against strains producing the CHDL OXA-24/40 and the class B metallo-β-lactamase VIM-2. Our kinetic and mass spectrometry studies revealed that this drug is a reversible inhibitor of OXA-23, where inhibition takes place through a branched pathway. X-ray crystallographic studies, molecular docking, and molecular dynamics simulations of the OXA-23-MA-1-206 complex show that the C6 hydroxymethyl group forms a hydrogen bond with the carboxylated catalytic lysine of OXA-23, effectively preventing deacylation. These results provide a promising strategy for designing a new generation of CHDL-resistant carbapenems to restore their efficacy against deadly A. baumannii infections.
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spelling pubmed-92390832022-06-29 C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation Stewart, Nichole K. Toth, Marta Alqurafi, Maha A. Chai, Weirui Nguyen, Thu Q. Quan, Pojun Lee, Mijoon Buynak, John D. Smith, Clyde A. Vakulenko, Sergei B. mBio Research Article Acinetobacter baumannii has become a major nosocomial pathogen, as it is often multidrug-resistant, which results in infections characterized by high mortality rates. The bacterium achieves high levels of resistance to β-lactam antibiotics by producing β-lactamases, enzymes which destroy these valuable agents. Historically, the carbapenem family of β-lactam antibiotics have been the drugs of choice for treating A. baumannii infections. However, their effectiveness has been significantly diminished due to the pathogen’s production of carbapenem-hydrolyzing class D β-lactamases (CHDLs); thus, new antibiotics and inhibitors of these enzymes are urgently needed. Here, we describe a new carbapenem antibiotic, MA-1-206, in which the canonical C6 hydroxyethyl group has been replaced with hydroxymethyl. The antimicrobial susceptibility studies presented here demonstrated that this compound is more potent than meropenem and imipenem against A. baumannii producing OXA-23, the most prevalent CHDL of this pathogen, and also against strains producing the CHDL OXA-24/40 and the class B metallo-β-lactamase VIM-2. Our kinetic and mass spectrometry studies revealed that this drug is a reversible inhibitor of OXA-23, where inhibition takes place through a branched pathway. X-ray crystallographic studies, molecular docking, and molecular dynamics simulations of the OXA-23-MA-1-206 complex show that the C6 hydroxymethyl group forms a hydrogen bond with the carboxylated catalytic lysine of OXA-23, effectively preventing deacylation. These results provide a promising strategy for designing a new generation of CHDL-resistant carbapenems to restore their efficacy against deadly A. baumannii infections. American Society for Microbiology 2022-04-14 /pmc/articles/PMC9239083/ /pubmed/35420470 http://dx.doi.org/10.1128/mbio.00367-22 Text en Copyright © 2022 Stewart et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Stewart, Nichole K.
Toth, Marta
Alqurafi, Maha A.
Chai, Weirui
Nguyen, Thu Q.
Quan, Pojun
Lee, Mijoon
Buynak, John D.
Smith, Clyde A.
Vakulenko, Sergei B.
C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title_full C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title_fullStr C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title_full_unstemmed C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title_short C6 Hydroxymethyl-Substituted Carbapenem MA-1-206 Inhibits the Major Acinetobacter baumannii Carbapenemase OXA-23 by Impeding Deacylation
title_sort c6 hydroxymethyl-substituted carbapenem ma-1-206 inhibits the major acinetobacter baumannii carbapenemase oxa-23 by impeding deacylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239083/
https://www.ncbi.nlm.nih.gov/pubmed/35420470
http://dx.doi.org/10.1128/mbio.00367-22
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