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Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors

Upon undergoing mucoid conversion within the lungs of cystic fibrosis patients, the pathogenic bacterium Pseudomonas aeruginosa synthesises copious quantities of the virulence factor and exopolysaccharide alginate. The enzyme guanosine diphosphate mannose dehydrogenase (GMD) catalyses the rate-limit...

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Autores principales: Dolan, Jonathan P., Ahmadipour, Sanaz, Wahart, Alice J. C., Cheallaigh, Aisling Ní, Sari, Suat, Eurtivong, Chatchakorn, Lima, Marcelo A., Skidmore, Mark A., Volcho, Konstantin P., Reynisson, Jóhannes, Field, Robert A., Miller, Gavin J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10619135/
https://www.ncbi.nlm.nih.gov/pubmed/37920392
http://dx.doi.org/10.1039/d3cb00126a
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author Dolan, Jonathan P.
Ahmadipour, Sanaz
Wahart, Alice J. C.
Cheallaigh, Aisling Ní
Sari, Suat
Eurtivong, Chatchakorn
Lima, Marcelo A.
Skidmore, Mark A.
Volcho, Konstantin P.
Reynisson, Jóhannes
Field, Robert A.
Miller, Gavin J.
author_facet Dolan, Jonathan P.
Ahmadipour, Sanaz
Wahart, Alice J. C.
Cheallaigh, Aisling Ní
Sari, Suat
Eurtivong, Chatchakorn
Lima, Marcelo A.
Skidmore, Mark A.
Volcho, Konstantin P.
Reynisson, Jóhannes
Field, Robert A.
Miller, Gavin J.
author_sort Dolan, Jonathan P.
collection PubMed
description Upon undergoing mucoid conversion within the lungs of cystic fibrosis patients, the pathogenic bacterium Pseudomonas aeruginosa synthesises copious quantities of the virulence factor and exopolysaccharide alginate. The enzyme guanosine diphosphate mannose dehydrogenase (GMD) catalyses the rate-limiting step and irreversible formation of the alginate sugar nucleotide building block, guanosine diphosphate mannuronic acid. Since there is no corresponding enzyme in humans, strategies that could prevent its mechanism of action could open a pathway for new and selective inhibitors to disrupt bacterial alginate production. Using virtual screening, a library of 1447 compounds within the Known Drug Space parameters were evaluated against the GMD active site using the Glide, FRED and GOLD algorithms. Compound hit evaluation with recombinant GMD refined the panel of 40 potential hits to 6 compounds which reduced NADH production in a time-dependent manner; of which, an usnic acid derivative demonstrated inhibition six-fold stronger than a previously established sugar nucleotide inhibitor, with an IC(50) value of 17 μM. Further analysis by covalent docking and mass spectrometry confirm a single site of GMD alkylation.
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spelling pubmed-106191352023-11-02 Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors Dolan, Jonathan P. Ahmadipour, Sanaz Wahart, Alice J. C. Cheallaigh, Aisling Ní Sari, Suat Eurtivong, Chatchakorn Lima, Marcelo A. Skidmore, Mark A. Volcho, Konstantin P. Reynisson, Jóhannes Field, Robert A. Miller, Gavin J. RSC Chem Biol Chemistry Upon undergoing mucoid conversion within the lungs of cystic fibrosis patients, the pathogenic bacterium Pseudomonas aeruginosa synthesises copious quantities of the virulence factor and exopolysaccharide alginate. The enzyme guanosine diphosphate mannose dehydrogenase (GMD) catalyses the rate-limiting step and irreversible formation of the alginate sugar nucleotide building block, guanosine diphosphate mannuronic acid. Since there is no corresponding enzyme in humans, strategies that could prevent its mechanism of action could open a pathway for new and selective inhibitors to disrupt bacterial alginate production. Using virtual screening, a library of 1447 compounds within the Known Drug Space parameters were evaluated against the GMD active site using the Glide, FRED and GOLD algorithms. Compound hit evaluation with recombinant GMD refined the panel of 40 potential hits to 6 compounds which reduced NADH production in a time-dependent manner; of which, an usnic acid derivative demonstrated inhibition six-fold stronger than a previously established sugar nucleotide inhibitor, with an IC(50) value of 17 μM. Further analysis by covalent docking and mass spectrometry confirm a single site of GMD alkylation. RSC 2023-08-29 /pmc/articles/PMC10619135/ /pubmed/37920392 http://dx.doi.org/10.1039/d3cb00126a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Dolan, Jonathan P.
Ahmadipour, Sanaz
Wahart, Alice J. C.
Cheallaigh, Aisling Ní
Sari, Suat
Eurtivong, Chatchakorn
Lima, Marcelo A.
Skidmore, Mark A.
Volcho, Konstantin P.
Reynisson, Jóhannes
Field, Robert A.
Miller, Gavin J.
Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title_full Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title_fullStr Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title_full_unstemmed Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title_short Virtual screening, identification and in vitro validation of small molecule GDP-mannose dehydrogenase inhibitors
title_sort virtual screening, identification and in vitro validation of small molecule gdp-mannose dehydrogenase inhibitors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10619135/
https://www.ncbi.nlm.nih.gov/pubmed/37920392
http://dx.doi.org/10.1039/d3cb00126a
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