Cargando…
Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris
Tigecycline is one of the last-resort antibiotics to treat severe infections. Recently, tigecycline resistance has sporadically emerged with an increasing trend, and Tet(X) family represents a new resistance mechanism of tigecycline. In this study, a novel chromosome-encoded tigecycline resistance g...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Taylor & Francis
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7473080/ https://www.ncbi.nlm.nih.gov/pubmed/32731802 http://dx.doi.org/10.1080/22221751.2020.1803769 |
_version_ | 1783579114043604992 |
---|---|
author | Cheng, Yingying Chen, Yong Liu, Yang Guo, Yuqi Zhou, Yanzi Xiao, Tingting Zhang, Shuntian Xu, Hao Chen, Yunbo Shan, Tongling Xiao, Yonghong Zhou, Kai |
author_facet | Cheng, Yingying Chen, Yong Liu, Yang Guo, Yuqi Zhou, Yanzi Xiao, Tingting Zhang, Shuntian Xu, Hao Chen, Yunbo Shan, Tongling Xiao, Yonghong Zhou, Kai |
author_sort | Cheng, Yingying |
collection | PubMed |
description | Tigecycline is one of the last-resort antibiotics to treat severe infections. Recently, tigecycline resistance has sporadically emerged with an increasing trend, and Tet(X) family represents a new resistance mechanism of tigecycline. In this study, a novel chromosome-encoded tigecycline resistance gene, tet(X14), was identified in a tigecycline-resistant and colistin-resistant Empedobacter stercoris strain ES183 recovered from a pig fecal sample in China. Tet(X14) shows 67.14-96.39% sequence identity to the other variants [Tet(X) to Tet(X13)]. Overexpression of Tet(X14) in Escherichia coli confers 16-fold increase in tigecycline MIC (from 0.125 to 2 mg/L), which is lower than that of Tet(X3), Tet(X4) and Tet(X6). Structural modelling predicted that Tet(X14) shared a high homology with the other 12 variants with RMSD value from 0.003 to 0.055, and Tet(X14) can interact with tetracyclines by a similar pattern as the other Tet(X)s. tet(X14) and two copies of tet(X2) were identified on a genome island with abnormal GC content carried by the chromosome of ES183, and no mobile genetic elements were found surrounding, suggesting that tet(X14) might be heterologously obtained by ES183 via recombination. Blasting in Genbank revealed that Tet(X14) was exclusively detected on the chromosome of Riemerella anatipestifer, mainly encoded on antimicrobial resistance islands. E. stercoris and R. anatipestifer belong to the family Flavobacteriaceae, suggesting that the members of Flavobacteriaceae maybe the major reservoir of tet(X14). Our study reports a novel chromosome-encoded tigecycline resistance gene tet(X14). The expanded members of Tet(X) family warrants the potential large-scale dissemination and the necessity of continuous surveillance for tet(X)-mediated tigecycline resistance. |
format | Online Article Text |
id | pubmed-7473080 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Taylor & Francis |
record_format | MEDLINE/PubMed |
spelling | pubmed-74730802020-09-15 Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris Cheng, Yingying Chen, Yong Liu, Yang Guo, Yuqi Zhou, Yanzi Xiao, Tingting Zhang, Shuntian Xu, Hao Chen, Yunbo Shan, Tongling Xiao, Yonghong Zhou, Kai Emerg Microbes Infect Articles Tigecycline is one of the last-resort antibiotics to treat severe infections. Recently, tigecycline resistance has sporadically emerged with an increasing trend, and Tet(X) family represents a new resistance mechanism of tigecycline. In this study, a novel chromosome-encoded tigecycline resistance gene, tet(X14), was identified in a tigecycline-resistant and colistin-resistant Empedobacter stercoris strain ES183 recovered from a pig fecal sample in China. Tet(X14) shows 67.14-96.39% sequence identity to the other variants [Tet(X) to Tet(X13)]. Overexpression of Tet(X14) in Escherichia coli confers 16-fold increase in tigecycline MIC (from 0.125 to 2 mg/L), which is lower than that of Tet(X3), Tet(X4) and Tet(X6). Structural modelling predicted that Tet(X14) shared a high homology with the other 12 variants with RMSD value from 0.003 to 0.055, and Tet(X14) can interact with tetracyclines by a similar pattern as the other Tet(X)s. tet(X14) and two copies of tet(X2) were identified on a genome island with abnormal GC content carried by the chromosome of ES183, and no mobile genetic elements were found surrounding, suggesting that tet(X14) might be heterologously obtained by ES183 via recombination. Blasting in Genbank revealed that Tet(X14) was exclusively detected on the chromosome of Riemerella anatipestifer, mainly encoded on antimicrobial resistance islands. E. stercoris and R. anatipestifer belong to the family Flavobacteriaceae, suggesting that the members of Flavobacteriaceae maybe the major reservoir of tet(X14). Our study reports a novel chromosome-encoded tigecycline resistance gene tet(X14). The expanded members of Tet(X) family warrants the potential large-scale dissemination and the necessity of continuous surveillance for tet(X)-mediated tigecycline resistance. Taylor & Francis 2020-08-14 /pmc/articles/PMC7473080/ /pubmed/32731802 http://dx.doi.org/10.1080/22221751.2020.1803769 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group, on behalf of Shanghai Shangyixun Cultural Communication Co., Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Articles Cheng, Yingying Chen, Yong Liu, Yang Guo, Yuqi Zhou, Yanzi Xiao, Tingting Zhang, Shuntian Xu, Hao Chen, Yunbo Shan, Tongling Xiao, Yonghong Zhou, Kai Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title | Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title_full | Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title_fullStr | Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title_full_unstemmed | Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title_short | Identification of novel tetracycline resistance gene tet(X14) and its co-occurrence with tet(X2) in a tigecycline-resistant and colistin-resistant Empedobacter stercoris |
title_sort | identification of novel tetracycline resistance gene tet(x14) and its co-occurrence with tet(x2) in a tigecycline-resistant and colistin-resistant empedobacter stercoris |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7473080/ https://www.ncbi.nlm.nih.gov/pubmed/32731802 http://dx.doi.org/10.1080/22221751.2020.1803769 |
work_keys_str_mv | AT chengyingying identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT chenyong identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT liuyang identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT guoyuqi identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT zhouyanzi identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT xiaotingting identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT zhangshuntian identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT xuhao identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT chenyunbo identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT shantongling identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT xiaoyonghong identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris AT zhoukai identificationofnoveltetracyclineresistancegenetetx14anditscooccurrencewithtetx2inatigecyclineresistantandcolistinresistantempedobacterstercoris |