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Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13

INTRODUCTION: Lelliottia amnigena, a bacterium usually isolated from natural environments, may cause human infections and has been suggested to be naturally resistant to second- and third-generation cephalosporins. METHODS: In this study, we determined the whole-genome sequence of an isolate, L. Amn...

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Autores principales: Li, Anqi, Yan, Chunxia, Zhang, Lei, Liu, Shuang, Feng, Chunlin, Zhang, Linhua, Dong, Fubo, Sheng, Xiusheng, Wang, Lan, Zhang, Yanfang, Lu, Junwan, Xu, Jiefeng, Zheng, Lin, Bao, Qiyu, Cheng, Cong, Huang, Dawei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9727190/
https://www.ncbi.nlm.nih.gov/pubmed/36504772
http://dx.doi.org/10.3389/fmicb.2022.990736
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author Li, Anqi
Yan, Chunxia
Zhang, Lei
Liu, Shuang
Feng, Chunlin
Zhang, Linhua
Dong, Fubo
Sheng, Xiusheng
Wang, Lan
Zhang, Yanfang
Lu, Junwan
Xu, Jiefeng
Zheng, Lin
Bao, Qiyu
Cheng, Cong
Huang, Dawei
author_facet Li, Anqi
Yan, Chunxia
Zhang, Lei
Liu, Shuang
Feng, Chunlin
Zhang, Linhua
Dong, Fubo
Sheng, Xiusheng
Wang, Lan
Zhang, Yanfang
Lu, Junwan
Xu, Jiefeng
Zheng, Lin
Bao, Qiyu
Cheng, Cong
Huang, Dawei
author_sort Li, Anqi
collection PubMed
description INTRODUCTION: Lelliottia amnigena, a bacterium usually isolated from natural environments, may cause human infections and has been suggested to be naturally resistant to second- and third-generation cephalosporins. METHODS: In this study, we determined the whole-genome sequence of an isolate, L. Amnigena P13, isolated from animal farm sewage. On the basis of genome sequence analysis, susceptibility testing, molecular cloning, and enzyme kinetic parameter analysis, we identified a novel chromosome-encoded AmpC β-lactamase, LAQ-1. RESULTS AND DISCUSSION: bla(LAQ-1) is resistant to penicillin G, ampicillin, and several first- to fourth-generation cephalosporins, such as cefazolin, cefoxitin and cefepime. The MIC levels of some β-lactams, such as cefoxitin, cefepime, aztreonam and cefazolin, for the recombinant clone (pUCP24-bla(LAQ-1)/DH5α) increased by approximately 4- to 64-fold compared with those of the control strain (pUCP24/DH5α). The kinetic properties of LAQ-1, with the highest catalytic activity observed toward piperacillin, were basically the same as those of typical class C β-lactamases, and avibactam had a strong inhibitory effect on its hydrolytic activity. The genetic background of bla(LAQ-1) was relatively conserved, and no mobile genetic element (MGE) was found around it. The plasmid pP13-67 of L. amnigena P13 harbored 12 resistance genes [qnrS1, aph(6)-Id, aadA2, sul1, sul2,bla(TEM-1), qacEΔ1, dfrA12, tetA and floR] related to different mobile genetic elements within an ~22 kb multidrug resistance region. The multidrug resistance region shared the highest nucleotide sequence similarities with those of the chromosomes or plasmids of different bacterial species, indicating the possibility of horizontal transfer of these resistance genes among different bacterial species.
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spelling pubmed-97271902022-12-08 Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13 Li, Anqi Yan, Chunxia Zhang, Lei Liu, Shuang Feng, Chunlin Zhang, Linhua Dong, Fubo Sheng, Xiusheng Wang, Lan Zhang, Yanfang Lu, Junwan Xu, Jiefeng Zheng, Lin Bao, Qiyu Cheng, Cong Huang, Dawei Front Microbiol Microbiology INTRODUCTION: Lelliottia amnigena, a bacterium usually isolated from natural environments, may cause human infections and has been suggested to be naturally resistant to second- and third-generation cephalosporins. METHODS: In this study, we determined the whole-genome sequence of an isolate, L. Amnigena P13, isolated from animal farm sewage. On the basis of genome sequence analysis, susceptibility testing, molecular cloning, and enzyme kinetic parameter analysis, we identified a novel chromosome-encoded AmpC β-lactamase, LAQ-1. RESULTS AND DISCUSSION: bla(LAQ-1) is resistant to penicillin G, ampicillin, and several first- to fourth-generation cephalosporins, such as cefazolin, cefoxitin and cefepime. The MIC levels of some β-lactams, such as cefoxitin, cefepime, aztreonam and cefazolin, for the recombinant clone (pUCP24-bla(LAQ-1)/DH5α) increased by approximately 4- to 64-fold compared with those of the control strain (pUCP24/DH5α). The kinetic properties of LAQ-1, with the highest catalytic activity observed toward piperacillin, were basically the same as those of typical class C β-lactamases, and avibactam had a strong inhibitory effect on its hydrolytic activity. The genetic background of bla(LAQ-1) was relatively conserved, and no mobile genetic element (MGE) was found around it. The plasmid pP13-67 of L. amnigena P13 harbored 12 resistance genes [qnrS1, aph(6)-Id, aadA2, sul1, sul2,bla(TEM-1), qacEΔ1, dfrA12, tetA and floR] related to different mobile genetic elements within an ~22 kb multidrug resistance region. The multidrug resistance region shared the highest nucleotide sequence similarities with those of the chromosomes or plasmids of different bacterial species, indicating the possibility of horizontal transfer of these resistance genes among different bacterial species. Frontiers Media S.A. 2022-11-23 /pmc/articles/PMC9727190/ /pubmed/36504772 http://dx.doi.org/10.3389/fmicb.2022.990736 Text en Copyright © 2022 Li, Yan, Zhang, Liu, Feng, Zhang, Dong, Sheng, Wang, Zhang, Lu, Xu, Zheng, Bao, Cheng and Huang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Li, Anqi
Yan, Chunxia
Zhang, Lei
Liu, Shuang
Feng, Chunlin
Zhang, Linhua
Dong, Fubo
Sheng, Xiusheng
Wang, Lan
Zhang, Yanfang
Lu, Junwan
Xu, Jiefeng
Zheng, Lin
Bao, Qiyu
Cheng, Cong
Huang, Dawei
Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title_full Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title_fullStr Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title_full_unstemmed Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title_short Characterization and identification of a novel chromosomal class C β-lactamase, LAQ-1, and comparative genomic analysis of a multidrug resistance plasmid in Lelliottia amnigena P13
title_sort characterization and identification of a novel chromosomal class c β-lactamase, laq-1, and comparative genomic analysis of a multidrug resistance plasmid in lelliottia amnigena p13
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9727190/
https://www.ncbi.nlm.nih.gov/pubmed/36504772
http://dx.doi.org/10.3389/fmicb.2022.990736
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