Cargando…

Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13

Yokenella regensburgei, a member of the family Enterobacteriaceae, is usually isolated from environmental samples and generally resistant to early generations of cephalosporins. To characterize the resistance mechanism of Y. regensburgei strain W13 isolated from the sewage of an animal farm, whole g...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Danying, Sun, Zhewei, Lu, Junwan, Liu, Hongmao, Lu, Wei, Lin, Hailong, Zhang, Xueya, Li, Qiaoling, Zhou, Wangxiao, Zhu, Xinyi, Xu, Haili, Lin, Xi, Zhang, Hailin, Xu, Teng, Li, Kewei, Bao, Qiyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7468467/
https://www.ncbi.nlm.nih.gov/pubmed/32973731
http://dx.doi.org/10.3389/fmicb.2020.02021
_version_ 1783578224601595904
author Zhou, Danying
Sun, Zhewei
Lu, Junwan
Liu, Hongmao
Lu, Wei
Lin, Hailong
Zhang, Xueya
Li, Qiaoling
Zhou, Wangxiao
Zhu, Xinyi
Xu, Haili
Lin, Xi
Zhang, Hailin
Xu, Teng
Li, Kewei
Bao, Qiyu
author_facet Zhou, Danying
Sun, Zhewei
Lu, Junwan
Liu, Hongmao
Lu, Wei
Lin, Hailong
Zhang, Xueya
Li, Qiaoling
Zhou, Wangxiao
Zhu, Xinyi
Xu, Haili
Lin, Xi
Zhang, Hailin
Xu, Teng
Li, Kewei
Bao, Qiyu
author_sort Zhou, Danying
collection PubMed
description Yokenella regensburgei, a member of the family Enterobacteriaceae, is usually isolated from environmental samples and generally resistant to early generations of cephalosporins. To characterize the resistance mechanism of Y. regensburgei strain W13 isolated from the sewage of an animal farm, whole genome sequencing, comparative genomics analysis and molecular cloning were performed. The results showed that a novel chromosomally encoded class C β-lactamase gene with the ability to confer resistance to β-lactam antibiotics, designated bla(YOC)(–)(1), was identified in the genome of Y. regensburgei W13. Kinetic analysis revealed that the β-lactamase YOC-1 has a broad spectrum of substrates, including penicillins, cefazolin, cefoxitin and cefotaxime. The two functionally characterized β-lactamases with the highest amino acid identities to YOC-1 were CDA-1 (71.69%) and CMY-2 (70.65%). The genetic context of the bla(YOC)(–)(1)-ampR-encoding region was unique compared with the sequences in the NCBI nucleotide database. The plasmid pRYW13-125 of Y. regensburgei W13 harbored 11 resistance genes (bla(OXA)(–)(10), bla(LAP)(–)(2), dfrA14, tetA, tetR, cmlA5, floR, sul2, ant(3″)-IIa, arr-2 and qnrS1) within an ∼34 kb multidrug resistance region; these genes were all related to mobile genetic elements. The multidrug resistance region of pYRW13-125 shared the highest identities with those of two plasmids from clinical Klebsiella pneumoniae isolates, indicating the possibility of horizontal transfer of these resistance genes between bacteria of various origins.
format Online
Article
Text
id pubmed-7468467
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-74684672020-09-23 Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13 Zhou, Danying Sun, Zhewei Lu, Junwan Liu, Hongmao Lu, Wei Lin, Hailong Zhang, Xueya Li, Qiaoling Zhou, Wangxiao Zhu, Xinyi Xu, Haili Lin, Xi Zhang, Hailin Xu, Teng Li, Kewei Bao, Qiyu Front Microbiol Microbiology Yokenella regensburgei, a member of the family Enterobacteriaceae, is usually isolated from environmental samples and generally resistant to early generations of cephalosporins. To characterize the resistance mechanism of Y. regensburgei strain W13 isolated from the sewage of an animal farm, whole genome sequencing, comparative genomics analysis and molecular cloning were performed. The results showed that a novel chromosomally encoded class C β-lactamase gene with the ability to confer resistance to β-lactam antibiotics, designated bla(YOC)(–)(1), was identified in the genome of Y. regensburgei W13. Kinetic analysis revealed that the β-lactamase YOC-1 has a broad spectrum of substrates, including penicillins, cefazolin, cefoxitin and cefotaxime. The two functionally characterized β-lactamases with the highest amino acid identities to YOC-1 were CDA-1 (71.69%) and CMY-2 (70.65%). The genetic context of the bla(YOC)(–)(1)-ampR-encoding region was unique compared with the sequences in the NCBI nucleotide database. The plasmid pRYW13-125 of Y. regensburgei W13 harbored 11 resistance genes (bla(OXA)(–)(10), bla(LAP)(–)(2), dfrA14, tetA, tetR, cmlA5, floR, sul2, ant(3″)-IIa, arr-2 and qnrS1) within an ∼34 kb multidrug resistance region; these genes were all related to mobile genetic elements. The multidrug resistance region of pYRW13-125 shared the highest identities with those of two plasmids from clinical Klebsiella pneumoniae isolates, indicating the possibility of horizontal transfer of these resistance genes between bacteria of various origins. Frontiers Media S.A. 2020-08-20 /pmc/articles/PMC7468467/ /pubmed/32973731 http://dx.doi.org/10.3389/fmicb.2020.02021 Text en Copyright © 2020 Zhou, Sun, Lu, Liu, Lu, Lin, Zhang, Li, Zhou, Zhu, Xu, Lin, Zhang, Xu, Li and Bao. http://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
Zhou, Danying
Sun, Zhewei
Lu, Junwan
Liu, Hongmao
Lu, Wei
Lin, Hailong
Zhang, Xueya
Li, Qiaoling
Zhou, Wangxiao
Zhu, Xinyi
Xu, Haili
Lin, Xi
Zhang, Hailin
Xu, Teng
Li, Kewei
Bao, Qiyu
Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title_full Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title_fullStr Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title_full_unstemmed Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title_short Characterization of a Novel Chromosomal Class C β-Lactamase, YOC-1, and Comparative Genomics Analysis of a Multidrug Resistance Plasmid in Yokenella regensburgei W13
title_sort characterization of a novel chromosomal class c β-lactamase, yoc-1, and comparative genomics analysis of a multidrug resistance plasmid in yokenella regensburgei w13
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7468467/
https://www.ncbi.nlm.nih.gov/pubmed/32973731
http://dx.doi.org/10.3389/fmicb.2020.02021
work_keys_str_mv AT zhoudanying characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT sunzhewei characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT lujunwan characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT liuhongmao characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT luwei characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT linhailong characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT zhangxueya characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT liqiaoling characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT zhouwangxiao characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT zhuxinyi characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT xuhaili characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT linxi characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT zhanghailin characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT xuteng characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT likewei characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13
AT baoqiyu characterizationofanovelchromosomalclasscblactamaseyoc1andcomparativegenomicsanalysisofamultidrugresistanceplasmidinyokenellaregensburgeiw13