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MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli

After several decades of use, trimethoprim (TMP) remains one of the key access antimicrobial drugs listed by the World Health Organization. To circumvent the problem of trimethoprim resistance worldwide, a better understanding of drug-resistance mechanisms is required. In this study, we screened the...

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Autores principales: Shi, Hongmei, Li, Ting, Xu, Jintian, Yu, Jifang, Yang, Shanshan, Zhang, Xian-En, Tao, Shengce, Gu, Jing, Deng, Jiao-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8355897/
https://www.ncbi.nlm.nih.gov/pubmed/34394028
http://dx.doi.org/10.3389/fmicb.2021.682205
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author Shi, Hongmei
Li, Ting
Xu, Jintian
Yu, Jifang
Yang, Shanshan
Zhang, Xian-En
Tao, Shengce
Gu, Jing
Deng, Jiao-Yu
author_facet Shi, Hongmei
Li, Ting
Xu, Jintian
Yu, Jifang
Yang, Shanshan
Zhang, Xian-En
Tao, Shengce
Gu, Jing
Deng, Jiao-Yu
author_sort Shi, Hongmei
collection PubMed
description After several decades of use, trimethoprim (TMP) remains one of the key access antimicrobial drugs listed by the World Health Organization. To circumvent the problem of trimethoprim resistance worldwide, a better understanding of drug-resistance mechanisms is required. In this study, we screened the single-gene knockout library of Escherichia coli, and identified mgrB and other several genes involved in trimethoprim resistance. Subsequent comparative transcriptional analysis between ΔmgrB and the wild-type strain showed that expression levels of phoP, phoQ, and folA were significantly upregulated in ΔmgrB. Further deleting phoP or phoQ could partially restore trimethoprim sensitivity to ΔmgrB, and co-overexpression of phoP/Q caused TMP resistance, suggesting the involvement of PhoP/Q in trimethoprim resistance. Correspondingly, MgrB and PhoP were shown to be able to modulated folA expression in vivo. After that, efforts were made to test if PhoP could directly modulate the expression of folA. Though phosphorylated PhoP could bind to the promotor region of folA in vitro, the former only provided a weak protection on the latter as shown by the DNA footprinting assay. In addition, deleting the deduced PhoP box in ΔmgrB could only slightly reverse the TMP resistance phenotype, suggesting that it is less likely for PhoP to directly modulate the transcription of folA. Taken together, our data suggested that, in E. coli, MgrB affects susceptibility to trimethoprim by modulating the expression of folA with the involvement of PhoP/Q. This work broadens our understanding of the regulation of folate metabolism and the mechanisms of TMP resistance in bacteria.
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spelling pubmed-83558972021-08-12 MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli Shi, Hongmei Li, Ting Xu, Jintian Yu, Jifang Yang, Shanshan Zhang, Xian-En Tao, Shengce Gu, Jing Deng, Jiao-Yu Front Microbiol Microbiology After several decades of use, trimethoprim (TMP) remains one of the key access antimicrobial drugs listed by the World Health Organization. To circumvent the problem of trimethoprim resistance worldwide, a better understanding of drug-resistance mechanisms is required. In this study, we screened the single-gene knockout library of Escherichia coli, and identified mgrB and other several genes involved in trimethoprim resistance. Subsequent comparative transcriptional analysis between ΔmgrB and the wild-type strain showed that expression levels of phoP, phoQ, and folA were significantly upregulated in ΔmgrB. Further deleting phoP or phoQ could partially restore trimethoprim sensitivity to ΔmgrB, and co-overexpression of phoP/Q caused TMP resistance, suggesting the involvement of PhoP/Q in trimethoprim resistance. Correspondingly, MgrB and PhoP were shown to be able to modulated folA expression in vivo. After that, efforts were made to test if PhoP could directly modulate the expression of folA. Though phosphorylated PhoP could bind to the promotor region of folA in vitro, the former only provided a weak protection on the latter as shown by the DNA footprinting assay. In addition, deleting the deduced PhoP box in ΔmgrB could only slightly reverse the TMP resistance phenotype, suggesting that it is less likely for PhoP to directly modulate the transcription of folA. Taken together, our data suggested that, in E. coli, MgrB affects susceptibility to trimethoprim by modulating the expression of folA with the involvement of PhoP/Q. This work broadens our understanding of the regulation of folate metabolism and the mechanisms of TMP resistance in bacteria. Frontiers Media S.A. 2021-07-28 /pmc/articles/PMC8355897/ /pubmed/34394028 http://dx.doi.org/10.3389/fmicb.2021.682205 Text en Copyright © 2021 Shi, Li, Xu, Yu, Yang, Zhang, Tao, Gu and Deng. 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
Shi, Hongmei
Li, Ting
Xu, Jintian
Yu, Jifang
Yang, Shanshan
Zhang, Xian-En
Tao, Shengce
Gu, Jing
Deng, Jiao-Yu
MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title_full MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title_fullStr MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title_full_unstemmed MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title_short MgrB Inactivation Confers Trimethoprim Resistance in Escherichia coli
title_sort mgrb inactivation confers trimethoprim resistance in escherichia coli
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8355897/
https://www.ncbi.nlm.nih.gov/pubmed/34394028
http://dx.doi.org/10.3389/fmicb.2021.682205
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