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Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials

Urease as a potential target of antimicrobial drugs has received considerable attention given its versatile roles in microbial infection. Development of effective urease inhibitors, however, is a significant challenge due to the deeply buried active site and highly specific substrate of a bacterial...

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Autores principales: Yang, Xinming, Koohi-Moghadam, Mohamad, Wang, Runming, Chang, Yuen-Yan, Woo, Patrick C. Y., Wang, Junwen, Li, Hongyan, Sun, Hongzhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5779714/
https://www.ncbi.nlm.nih.gov/pubmed/29320492
http://dx.doi.org/10.1371/journal.pbio.2003887
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author Yang, Xinming
Koohi-Moghadam, Mohamad
Wang, Runming
Chang, Yuen-Yan
Woo, Patrick C. Y.
Wang, Junwen
Li, Hongyan
Sun, Hongzhe
author_facet Yang, Xinming
Koohi-Moghadam, Mohamad
Wang, Runming
Chang, Yuen-Yan
Woo, Patrick C. Y.
Wang, Junwen
Li, Hongyan
Sun, Hongzhe
author_sort Yang, Xinming
collection PubMed
description Urease as a potential target of antimicrobial drugs has received considerable attention given its versatile roles in microbial infection. Development of effective urease inhibitors, however, is a significant challenge due to the deeply buried active site and highly specific substrate of a bacterial urease. Conventionally, urease inhibitors are designed by either targeting the active site or mimicking substrate of urease, which is not efficient. Up to now, only one effective inhibitor—acetohydroxamic acid (AHA)—is clinically available, but it has adverse side effects. Herein, we demonstrate that a clinically used drug, colloidal bismuth subcitrate, utilizes an unusual way to inhibit urease activity, i.e., disruption of urease maturation process via functional perturbation of a metallochaperone, UreG. Similar phenomena were also observed in various pathogenic bacteria, suggesting that UreG may serve as a general target for design of new types of urease inhibitors. Using Helicobacter pylori UreG as a showcase, by virtual screening combined with experimental validation, we show that two compounds targeting UreG also efficiently inhibited urease activity with inhibitory concentration (IC)(50) values of micromolar level, resulting in attenuated virulence of the pathogen. We further demonstrate the efficacy of the compounds in a mammalian cell infection model. This study opens up a new opportunity for the design of more effective urease inhibitors and clearly indicates that metallochaperones involved in the maturation of important microbial metalloenzymes serve as new targets for devising a new type of antimicrobial drugs.
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spelling pubmed-57797142018-02-08 Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials Yang, Xinming Koohi-Moghadam, Mohamad Wang, Runming Chang, Yuen-Yan Woo, Patrick C. Y. Wang, Junwen Li, Hongyan Sun, Hongzhe PLoS Biol Research Article Urease as a potential target of antimicrobial drugs has received considerable attention given its versatile roles in microbial infection. Development of effective urease inhibitors, however, is a significant challenge due to the deeply buried active site and highly specific substrate of a bacterial urease. Conventionally, urease inhibitors are designed by either targeting the active site or mimicking substrate of urease, which is not efficient. Up to now, only one effective inhibitor—acetohydroxamic acid (AHA)—is clinically available, but it has adverse side effects. Herein, we demonstrate that a clinically used drug, colloidal bismuth subcitrate, utilizes an unusual way to inhibit urease activity, i.e., disruption of urease maturation process via functional perturbation of a metallochaperone, UreG. Similar phenomena were also observed in various pathogenic bacteria, suggesting that UreG may serve as a general target for design of new types of urease inhibitors. Using Helicobacter pylori UreG as a showcase, by virtual screening combined with experimental validation, we show that two compounds targeting UreG also efficiently inhibited urease activity with inhibitory concentration (IC)(50) values of micromolar level, resulting in attenuated virulence of the pathogen. We further demonstrate the efficacy of the compounds in a mammalian cell infection model. This study opens up a new opportunity for the design of more effective urease inhibitors and clearly indicates that metallochaperones involved in the maturation of important microbial metalloenzymes serve as new targets for devising a new type of antimicrobial drugs. Public Library of Science 2018-01-10 /pmc/articles/PMC5779714/ /pubmed/29320492 http://dx.doi.org/10.1371/journal.pbio.2003887 Text en © 2018 Yang et al http://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/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yang, Xinming
Koohi-Moghadam, Mohamad
Wang, Runming
Chang, Yuen-Yan
Woo, Patrick C. Y.
Wang, Junwen
Li, Hongyan
Sun, Hongzhe
Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title_full Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title_fullStr Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title_full_unstemmed Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title_short Metallochaperone UreG serves as a new target for design of urease inhibitor: A novel strategy for development of antimicrobials
title_sort metallochaperone ureg serves as a new target for design of urease inhibitor: a novel strategy for development of antimicrobials
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5779714/
https://www.ncbi.nlm.nih.gov/pubmed/29320492
http://dx.doi.org/10.1371/journal.pbio.2003887
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