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A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides

The threat of antimicrobial resistance calls for more efforts in basic science, drug discovery, and clinical development, particularly gram-negative carbapenem-resistant pathogens. We sought to identify novel antibacterial agents against Acinetobacter baumannii ATCC19606 using whole cell-based scree...

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Autores principales: Hui, Zhen, Liu, Shiyi, Cui, Ruiqin, Zhou, Biao, Hu, Chunxia, Zhang, Min, Deng, Qiuyang, Cheng, Shumin, Luo, Yutian, Chen, Huaisheng, Wu, Jinsong, Lu, Yuemei, Liu, Xueyan, Dai, Lingyun, Huang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7811946/
https://www.ncbi.nlm.nih.gov/pubmed/33456052
http://dx.doi.org/10.1038/s41429-020-00401-2
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author Hui, Zhen
Liu, Shiyi
Cui, Ruiqin
Zhou, Biao
Hu, Chunxia
Zhang, Min
Deng, Qiuyang
Cheng, Shumin
Luo, Yutian
Chen, Huaisheng
Wu, Jinsong
Lu, Yuemei
Liu, Xueyan
Dai, Lingyun
Huang, Wei
author_facet Hui, Zhen
Liu, Shiyi
Cui, Ruiqin
Zhou, Biao
Hu, Chunxia
Zhang, Min
Deng, Qiuyang
Cheng, Shumin
Luo, Yutian
Chen, Huaisheng
Wu, Jinsong
Lu, Yuemei
Liu, Xueyan
Dai, Lingyun
Huang, Wei
author_sort Hui, Zhen
collection PubMed
description The threat of antimicrobial resistance calls for more efforts in basic science, drug discovery, and clinical development, particularly gram-negative carbapenem-resistant pathogens. We sought to identify novel antibacterial agents against Acinetobacter baumannii ATCC19606 using whole cell-based screening. A small molecule named 6D1 with the chemical structure of 6-fluorobenzo[d]isothiazol-3(2H)-one was identified and exhibited activity against A. baumannii ATCC19606 strain (minimal inhibitory concentration, MIC = 1 mg l(−1)). The mutation in the plasmid-derived ohrB gene that encodes a peroxidase was identified in spontaneously resistant mutants. Treatment of the bacteria with 6D1 resulted in increased sensitivity to peroxide, such as tert-butyl hydroperoxide. The binding of 6D1 and OhrB was confirmed by surface plasmon resonance. Interestingly, the MIC of kanamycin and gentamicin against spontaneously resistant mutants decreased. Finally, we identified the effect of 6D1 on enhancing the antibacterial activity of kanamycin and gentamicin, including against New Delhi metallo-β-lactamase (NDM-1)-producing carbapenem-resistant Klebsiella pneumoniae, but not in strains carrying aminoglycosides resistance genes. In this study, we identified a small molecule that suppresses the growth of A. baumannii, interacts with hydroperoxide reductase from A. baumannii ATCC19606 plasmid pMAC, and enhances the antibacterial activity of kanamycin and gentamicin. We propose that peroxidase may be potentially used as a target for aminoglycosides adjuvant development.
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spelling pubmed-78119462021-01-18 A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides Hui, Zhen Liu, Shiyi Cui, Ruiqin Zhou, Biao Hu, Chunxia Zhang, Min Deng, Qiuyang Cheng, Shumin Luo, Yutian Chen, Huaisheng Wu, Jinsong Lu, Yuemei Liu, Xueyan Dai, Lingyun Huang, Wei J Antibiot (Tokyo) Article The threat of antimicrobial resistance calls for more efforts in basic science, drug discovery, and clinical development, particularly gram-negative carbapenem-resistant pathogens. We sought to identify novel antibacterial agents against Acinetobacter baumannii ATCC19606 using whole cell-based screening. A small molecule named 6D1 with the chemical structure of 6-fluorobenzo[d]isothiazol-3(2H)-one was identified and exhibited activity against A. baumannii ATCC19606 strain (minimal inhibitory concentration, MIC = 1 mg l(−1)). The mutation in the plasmid-derived ohrB gene that encodes a peroxidase was identified in spontaneously resistant mutants. Treatment of the bacteria with 6D1 resulted in increased sensitivity to peroxide, such as tert-butyl hydroperoxide. The binding of 6D1 and OhrB was confirmed by surface plasmon resonance. Interestingly, the MIC of kanamycin and gentamicin against spontaneously resistant mutants decreased. Finally, we identified the effect of 6D1 on enhancing the antibacterial activity of kanamycin and gentamicin, including against New Delhi metallo-β-lactamase (NDM-1)-producing carbapenem-resistant Klebsiella pneumoniae, but not in strains carrying aminoglycosides resistance genes. In this study, we identified a small molecule that suppresses the growth of A. baumannii, interacts with hydroperoxide reductase from A. baumannii ATCC19606 plasmid pMAC, and enhances the antibacterial activity of kanamycin and gentamicin. We propose that peroxidase may be potentially used as a target for aminoglycosides adjuvant development. Nature Publishing Group UK 2021-01-18 2021 /pmc/articles/PMC7811946/ /pubmed/33456052 http://dx.doi.org/10.1038/s41429-020-00401-2 Text en © The Author(s), under exclusive licence to The Author(s), under exclusive licence to the Japan Antibiotics Research Association 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Hui, Zhen
Liu, Shiyi
Cui, Ruiqin
Zhou, Biao
Hu, Chunxia
Zhang, Min
Deng, Qiuyang
Cheng, Shumin
Luo, Yutian
Chen, Huaisheng
Wu, Jinsong
Lu, Yuemei
Liu, Xueyan
Dai, Lingyun
Huang, Wei
A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title_full A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title_fullStr A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title_full_unstemmed A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title_short A small molecule interacts with pMAC-derived hydroperoxide reductase and enhances the activity of aminoglycosides
title_sort small molecule interacts with pmac-derived hydroperoxide reductase and enhances the activity of aminoglycosides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7811946/
https://www.ncbi.nlm.nih.gov/pubmed/33456052
http://dx.doi.org/10.1038/s41429-020-00401-2
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