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Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase

[Image: see text] Inhibitor design incorporating features of the reaction coordinate and transition-state structure has emerged as a powerful approach for the development of enzyme inhibitors. Such inhibitors find use as mechanistic probes, chemical biology tools, and therapeutics. Endo-α-1,2-mannos...

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Autores principales: Petricevic, Marija, Sobala, Lukasz F., Fernandes, Pearl Z., Raich, Lluís, Thompson, Andrew J., Bernardo-Seisdedos, Ganeko, Millet, Oscar, Zhu, Sha, Sollogoub, Matthieu, Jiménez-Barbero, Jesús, Rovira, Carme, Davies, Gideon J., Williams, Spencer J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2016
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5269645/
https://www.ncbi.nlm.nih.gov/pubmed/27992199
http://dx.doi.org/10.1021/jacs.6b10075
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author Petricevic, Marija
Sobala, Lukasz F.
Fernandes, Pearl Z.
Raich, Lluís
Thompson, Andrew J.
Bernardo-Seisdedos, Ganeko
Millet, Oscar
Zhu, Sha
Sollogoub, Matthieu
Jiménez-Barbero, Jesús
Rovira, Carme
Davies, Gideon J.
Williams, Spencer J.
author_facet Petricevic, Marija
Sobala, Lukasz F.
Fernandes, Pearl Z.
Raich, Lluís
Thompson, Andrew J.
Bernardo-Seisdedos, Ganeko
Millet, Oscar
Zhu, Sha
Sollogoub, Matthieu
Jiménez-Barbero, Jesús
Rovira, Carme
Davies, Gideon J.
Williams, Spencer J.
author_sort Petricevic, Marija
collection PubMed
description [Image: see text] Inhibitor design incorporating features of the reaction coordinate and transition-state structure has emerged as a powerful approach for the development of enzyme inhibitors. Such inhibitors find use as mechanistic probes, chemical biology tools, and therapeutics. Endo-α-1,2-mannosidases and endo-α-1,2-mannanases, members of glycoside hydrolase family 99 (GH99), are interesting targets for inhibitor development as they play key roles in N-glycan maturation and microbiotal yeast mannan degradation, respectively. These enzymes are proposed to act via a 1,2-anhydrosugar “epoxide” mechanism that proceeds through an unusual conformational itinerary. Here, we explore how shape and charge contribute to binding of diverse inhibitors of these enzymes. We report the synthesis of neutral dideoxy, glucal and cyclohexenyl disaccharide inhibitors, their binding to GH99 endo-α-1,2-mannanases, and their structural analysis by X-ray crystallography. Quantum mechanical calculations of the free energy landscapes reveal how the neutral inhibitors provide shape but not charge mimicry of the proposed intermediate and transition state structures. Building upon the knowledge of shape and charge contributions to inhibition of family GH99 enzymes, we design and synthesize α-Man-1,3-noeuromycin, which is revealed to be the most potent inhibitor (K(D) 13 nM for Bacteroides xylanisolvens GH99 enzyme) of these enzymes yet reported. This work reveals how shape and charge mimicry of transition state features can enable the rational design of potent inhibitors.
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spelling pubmed-52696452017-01-30 Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase Petricevic, Marija Sobala, Lukasz F. Fernandes, Pearl Z. Raich, Lluís Thompson, Andrew J. Bernardo-Seisdedos, Ganeko Millet, Oscar Zhu, Sha Sollogoub, Matthieu Jiménez-Barbero, Jesús Rovira, Carme Davies, Gideon J. Williams, Spencer J. J Am Chem Soc [Image: see text] Inhibitor design incorporating features of the reaction coordinate and transition-state structure has emerged as a powerful approach for the development of enzyme inhibitors. Such inhibitors find use as mechanistic probes, chemical biology tools, and therapeutics. Endo-α-1,2-mannosidases and endo-α-1,2-mannanases, members of glycoside hydrolase family 99 (GH99), are interesting targets for inhibitor development as they play key roles in N-glycan maturation and microbiotal yeast mannan degradation, respectively. These enzymes are proposed to act via a 1,2-anhydrosugar “epoxide” mechanism that proceeds through an unusual conformational itinerary. Here, we explore how shape and charge contribute to binding of diverse inhibitors of these enzymes. We report the synthesis of neutral dideoxy, glucal and cyclohexenyl disaccharide inhibitors, their binding to GH99 endo-α-1,2-mannanases, and their structural analysis by X-ray crystallography. Quantum mechanical calculations of the free energy landscapes reveal how the neutral inhibitors provide shape but not charge mimicry of the proposed intermediate and transition state structures. Building upon the knowledge of shape and charge contributions to inhibition of family GH99 enzymes, we design and synthesize α-Man-1,3-noeuromycin, which is revealed to be the most potent inhibitor (K(D) 13 nM for Bacteroides xylanisolvens GH99 enzyme) of these enzymes yet reported. This work reveals how shape and charge mimicry of transition state features can enable the rational design of potent inhibitors. American Chemical Society 2016-12-19 2017-01-25 /pmc/articles/PMC5269645/ /pubmed/27992199 http://dx.doi.org/10.1021/jacs.6b10075 Text en Copyright © 2016 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Petricevic, Marija
Sobala, Lukasz F.
Fernandes, Pearl Z.
Raich, Lluís
Thompson, Andrew J.
Bernardo-Seisdedos, Ganeko
Millet, Oscar
Zhu, Sha
Sollogoub, Matthieu
Jiménez-Barbero, Jesús
Rovira, Carme
Davies, Gideon J.
Williams, Spencer J.
Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title_full Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title_fullStr Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title_full_unstemmed Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title_short Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-α-1,2-Mannanase
title_sort contribution of shape and charge to the inhibition of a family gh99 endo-α-1,2-mannanase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5269645/
https://www.ncbi.nlm.nih.gov/pubmed/27992199
http://dx.doi.org/10.1021/jacs.6b10075
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