Cargando…
A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene
Streptomycin is considered to be one of the effective antibiotics for the treatment of plague. In order to investigate the streptomycin resistance of Y. pestis in China, we evaluated streptomycin susceptibility of 536 Y. pestis strains in China in vitro using the minimal inhibitory concentration (MI...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096067/ https://www.ncbi.nlm.nih.gov/pubmed/33886558 http://dx.doi.org/10.1371/journal.pntd.0009324 |
_version_ | 1783688088027922432 |
---|---|
author | Dai, Ruixia He, Jian Zha, Xi Wang, Yiting Zhang, Xuefei Gao, He Yang, Xiaoyan Li, Juan Xin, Youquan Wang, Yumeng Li, Sheng Jin, Juan Zhang, Qi Bai, Jixiang Peng, Yao Wu, Hailian Zhang, Qingwen Wei, Baiqing Xu, Jianguo Li, Wei |
author_facet | Dai, Ruixia He, Jian Zha, Xi Wang, Yiting Zhang, Xuefei Gao, He Yang, Xiaoyan Li, Juan Xin, Youquan Wang, Yumeng Li, Sheng Jin, Juan Zhang, Qi Bai, Jixiang Peng, Yao Wu, Hailian Zhang, Qingwen Wei, Baiqing Xu, Jianguo Li, Wei |
author_sort | Dai, Ruixia |
collection | PubMed |
description | Streptomycin is considered to be one of the effective antibiotics for the treatment of plague. In order to investigate the streptomycin resistance of Y. pestis in China, we evaluated streptomycin susceptibility of 536 Y. pestis strains in China in vitro using the minimal inhibitory concentration (MIC) and screened streptomycin resistance-associated genes (strA and strB) by PCR method. A clinical Y. pestis isolate (S19960127) exhibited high-level resistance to streptomycin (the MIC was 4,096 mg/L). The strain (biovar antiqua) was isolated from a pneumonic plague outbreak in 1996 in Tibet Autonomous Region, China, belonging to the Marmota himalayana Qinghai–Tibet Plateau plague focus. In contrast to previously reported streptomycin resistance mediated by conjugative plasmids, the genome sequencing and allelic replacement experiments demonstrated that an rpsL gene (ribosomal protein S12) mutation with substitution of amino-acid 43 (K43R) was responsible for the high-level resistance to streptomycin in strain S19960127, which is consistent with the mutation reported in some streptomycin-resistant Mycobacterium tuberculosis strains. Streptomycin is used as the first-line treatment against plague in many countries. The emergence of streptomycin resistance in Y. pestis represents a critical public health problem. So streptomycin susceptibility monitoring of Y. pestis isolates should not only include plasmid-mediated resistance but also include the ribosomal protein S12 gene (rpsL) mutation, especially when treatment failure is suspected due to antibiotic resistance. |
format | Online Article Text |
id | pubmed-8096067 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-80960672021-05-13 A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene Dai, Ruixia He, Jian Zha, Xi Wang, Yiting Zhang, Xuefei Gao, He Yang, Xiaoyan Li, Juan Xin, Youquan Wang, Yumeng Li, Sheng Jin, Juan Zhang, Qi Bai, Jixiang Peng, Yao Wu, Hailian Zhang, Qingwen Wei, Baiqing Xu, Jianguo Li, Wei PLoS Negl Trop Dis Research Article Streptomycin is considered to be one of the effective antibiotics for the treatment of plague. In order to investigate the streptomycin resistance of Y. pestis in China, we evaluated streptomycin susceptibility of 536 Y. pestis strains in China in vitro using the minimal inhibitory concentration (MIC) and screened streptomycin resistance-associated genes (strA and strB) by PCR method. A clinical Y. pestis isolate (S19960127) exhibited high-level resistance to streptomycin (the MIC was 4,096 mg/L). The strain (biovar antiqua) was isolated from a pneumonic plague outbreak in 1996 in Tibet Autonomous Region, China, belonging to the Marmota himalayana Qinghai–Tibet Plateau plague focus. In contrast to previously reported streptomycin resistance mediated by conjugative plasmids, the genome sequencing and allelic replacement experiments demonstrated that an rpsL gene (ribosomal protein S12) mutation with substitution of amino-acid 43 (K43R) was responsible for the high-level resistance to streptomycin in strain S19960127, which is consistent with the mutation reported in some streptomycin-resistant Mycobacterium tuberculosis strains. Streptomycin is used as the first-line treatment against plague in many countries. The emergence of streptomycin resistance in Y. pestis represents a critical public health problem. So streptomycin susceptibility monitoring of Y. pestis isolates should not only include plasmid-mediated resistance but also include the ribosomal protein S12 gene (rpsL) mutation, especially when treatment failure is suspected due to antibiotic resistance. Public Library of Science 2021-04-22 /pmc/articles/PMC8096067/ /pubmed/33886558 http://dx.doi.org/10.1371/journal.pntd.0009324 Text en © 2021 Dai et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Dai, Ruixia He, Jian Zha, Xi Wang, Yiting Zhang, Xuefei Gao, He Yang, Xiaoyan Li, Juan Xin, Youquan Wang, Yumeng Li, Sheng Jin, Juan Zhang, Qi Bai, Jixiang Peng, Yao Wu, Hailian Zhang, Qingwen Wei, Baiqing Xu, Jianguo Li, Wei A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title | A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title_full | A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title_fullStr | A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title_full_unstemmed | A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title_short | A novel mechanism of streptomycin resistance in Yersinia pestis: Mutation in the rpsL gene |
title_sort | novel mechanism of streptomycin resistance in yersinia pestis: mutation in the rpsl gene |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096067/ https://www.ncbi.nlm.nih.gov/pubmed/33886558 http://dx.doi.org/10.1371/journal.pntd.0009324 |
work_keys_str_mv | AT dairuixia anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT hejian anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhaxi anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wangyiting anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangxuefei anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT gaohe anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT yangxiaoyan anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT lijuan anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT xinyouquan anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wangyumeng anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT lisheng anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT jinjuan anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangqi anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT baijixiang anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT pengyao anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wuhailian anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangqingwen anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT weibaiqing anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT xujianguo anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT liwei anovelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT dairuixia novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT hejian novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhaxi novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wangyiting novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangxuefei novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT gaohe novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT yangxiaoyan novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT lijuan novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT xinyouquan novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wangyumeng novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT lisheng novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT jinjuan novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangqi novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT baijixiang novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT pengyao novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT wuhailian novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT zhangqingwen novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT weibaiqing novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT xujianguo novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene AT liwei novelmechanismofstreptomycinresistanceinyersiniapestismutationintherpslgene |