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Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40

The chromosomal bla(OXA-51)-type gene encodes carbapenem-hydrolyzing class D β-lactamases (CHDLs), specific variants shown to mediate carbapenem resistance in the Gram-negative bacterial pathogen Acinetobacter baumannii. This study aims to characterize the effect of key amino acid substitutions in O...

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Autores principales: Chan, Kwan-Wai, Liu, Chen-Yu, Wong, Ho-Yin, Chan, Wai-Chi, Wong, Kwok-Yin, Chen, Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105447/
https://www.ncbi.nlm.nih.gov/pubmed/35562886
http://dx.doi.org/10.3390/ijms23094496
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author Chan, Kwan-Wai
Liu, Chen-Yu
Wong, Ho-Yin
Chan, Wai-Chi
Wong, Kwok-Yin
Chen, Sheng
author_facet Chan, Kwan-Wai
Liu, Chen-Yu
Wong, Ho-Yin
Chan, Wai-Chi
Wong, Kwok-Yin
Chen, Sheng
author_sort Chan, Kwan-Wai
collection PubMed
description The chromosomal bla(OXA-51)-type gene encodes carbapenem-hydrolyzing class D β-lactamases (CHDLs), specific variants shown to mediate carbapenem resistance in the Gram-negative bacterial pathogen Acinetobacter baumannii. This study aims to characterize the effect of key amino acid substitutions in OXA-51 variants of carbapenem-hydrolyzing class D β-lactamases (CHDLs) on substrate catalysis. Mutational and structural analyses indicated that each of the L167V, W222G, or I129L substitutions contributed to an increase in catalytic activity. The I129L mutation exhibited the most substantial effect. The combination of W222G and I129L substitutions exhibited an extremely strong catalytic enhancement effect in OXA-66, resulting in higher activity than OXA-23 and OXA-24/40 against carbapenems. These findings suggested that specific arrangement of residues in these three important positions in the intrinsic OXA-51 type of enzyme can generate variants that are even more active than known CHDLs. Likewise, mutation leading to the W222M change also causes a significant increase in the catalytic activity of OXA-51. bla(OXA-51) gene in A. baumannii may likely continue to evolve, generating mutant genes that encode carbapenemase with extremely strong catalytic activity.
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spelling pubmed-91054472022-05-14 Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40 Chan, Kwan-Wai Liu, Chen-Yu Wong, Ho-Yin Chan, Wai-Chi Wong, Kwok-Yin Chen, Sheng Int J Mol Sci Article The chromosomal bla(OXA-51)-type gene encodes carbapenem-hydrolyzing class D β-lactamases (CHDLs), specific variants shown to mediate carbapenem resistance in the Gram-negative bacterial pathogen Acinetobacter baumannii. This study aims to characterize the effect of key amino acid substitutions in OXA-51 variants of carbapenem-hydrolyzing class D β-lactamases (CHDLs) on substrate catalysis. Mutational and structural analyses indicated that each of the L167V, W222G, or I129L substitutions contributed to an increase in catalytic activity. The I129L mutation exhibited the most substantial effect. The combination of W222G and I129L substitutions exhibited an extremely strong catalytic enhancement effect in OXA-66, resulting in higher activity than OXA-23 and OXA-24/40 against carbapenems. These findings suggested that specific arrangement of residues in these three important positions in the intrinsic OXA-51 type of enzyme can generate variants that are even more active than known CHDLs. Likewise, mutation leading to the W222M change also causes a significant increase in the catalytic activity of OXA-51. bla(OXA-51) gene in A. baumannii may likely continue to evolve, generating mutant genes that encode carbapenemase with extremely strong catalytic activity. MDPI 2022-04-19 /pmc/articles/PMC9105447/ /pubmed/35562886 http://dx.doi.org/10.3390/ijms23094496 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chan, Kwan-Wai
Liu, Chen-Yu
Wong, Ho-Yin
Chan, Wai-Chi
Wong, Kwok-Yin
Chen, Sheng
Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title_full Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title_fullStr Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title_full_unstemmed Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title_short Specific Amino Acid Substitutions in OXA-51-Type β-Lactamase Enhance Catalytic Activity to a Level Comparable to Carbapenemase OXA-23 and OXA-24/40
title_sort specific amino acid substitutions in oxa-51-type β-lactamase enhance catalytic activity to a level comparable to carbapenemase oxa-23 and oxa-24/40
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105447/
https://www.ncbi.nlm.nih.gov/pubmed/35562886
http://dx.doi.org/10.3390/ijms23094496
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