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Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin

Antagonists of the Escherichia coli type-1 fimbrial adhesin FimH are recognized as attractive alternatives for antibiotic therapies and prophylaxes against acute and recurrent bacterial infections. In this study α-d-mannopyranosides O- or C-linked with an alkyl, alkene, alkyne, thioalkyl, amide, or...

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Autores principales: Touaibia, Mohamed, Krammer, Eva-Maria, Shiao, Tze C., Yamakawa, Nao, Wang, Qingan, Glinschert, Anja, Papadopoulos, Alex, Mousavifar, Leila, Maes, Emmanuel, Oscarson, Stefan, Vergoten, Gerard, Lensink, Marc F., Roy, René, Bouckaert, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6152123/
https://www.ncbi.nlm.nih.gov/pubmed/28671638
http://dx.doi.org/10.3390/molecules22071101
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author Touaibia, Mohamed
Krammer, Eva-Maria
Shiao, Tze C.
Yamakawa, Nao
Wang, Qingan
Glinschert, Anja
Papadopoulos, Alex
Mousavifar, Leila
Maes, Emmanuel
Oscarson, Stefan
Vergoten, Gerard
Lensink, Marc F.
Roy, René
Bouckaert, Julie
author_facet Touaibia, Mohamed
Krammer, Eva-Maria
Shiao, Tze C.
Yamakawa, Nao
Wang, Qingan
Glinschert, Anja
Papadopoulos, Alex
Mousavifar, Leila
Maes, Emmanuel
Oscarson, Stefan
Vergoten, Gerard
Lensink, Marc F.
Roy, René
Bouckaert, Julie
author_sort Touaibia, Mohamed
collection PubMed
description Antagonists of the Escherichia coli type-1 fimbrial adhesin FimH are recognized as attractive alternatives for antibiotic therapies and prophylaxes against acute and recurrent bacterial infections. In this study α-d-mannopyranosides O- or C-linked with an alkyl, alkene, alkyne, thioalkyl, amide, or sulfonamide were investigated to fit a hydrophobic substituent with up to two aryl groups within the tyrosine gate emerging from the mannose-binding pocket of FimH. The results were summarized into a set of structure-activity relationships to be used in FimH-targeted inhibitor design: alkene linkers gave an improved affinity and inhibitory potential, because of their relative flexibility combined with a favourable interaction with isoleucine-52 located in the middle of the tyrosine gate. Of particular interest is a C-linked mannoside, alkene-linked to an ortho-substituted biphenyl that has an affinity similar to its O-mannosidic analog but superior to its para-substituted analog. Docking of its high-resolution NMR solution structure to the FimH adhesin indicated that its ultimate, ortho-placed phenyl ring is able to interact with isoleucine-13, located in the clamp loop that undergoes conformational changes under shear force exerted on the bacteria. Molecular dynamics simulations confirmed that a subpopulation of the C-mannoside conformers is able to interact in this secondary binding site of FimH.
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spelling pubmed-61521232018-11-13 Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin Touaibia, Mohamed Krammer, Eva-Maria Shiao, Tze C. Yamakawa, Nao Wang, Qingan Glinschert, Anja Papadopoulos, Alex Mousavifar, Leila Maes, Emmanuel Oscarson, Stefan Vergoten, Gerard Lensink, Marc F. Roy, René Bouckaert, Julie Molecules Article Antagonists of the Escherichia coli type-1 fimbrial adhesin FimH are recognized as attractive alternatives for antibiotic therapies and prophylaxes against acute and recurrent bacterial infections. In this study α-d-mannopyranosides O- or C-linked with an alkyl, alkene, alkyne, thioalkyl, amide, or sulfonamide were investigated to fit a hydrophobic substituent with up to two aryl groups within the tyrosine gate emerging from the mannose-binding pocket of FimH. The results were summarized into a set of structure-activity relationships to be used in FimH-targeted inhibitor design: alkene linkers gave an improved affinity and inhibitory potential, because of their relative flexibility combined with a favourable interaction with isoleucine-52 located in the middle of the tyrosine gate. Of particular interest is a C-linked mannoside, alkene-linked to an ortho-substituted biphenyl that has an affinity similar to its O-mannosidic analog but superior to its para-substituted analog. Docking of its high-resolution NMR solution structure to the FimH adhesin indicated that its ultimate, ortho-placed phenyl ring is able to interact with isoleucine-13, located in the clamp loop that undergoes conformational changes under shear force exerted on the bacteria. Molecular dynamics simulations confirmed that a subpopulation of the C-mannoside conformers is able to interact in this secondary binding site of FimH. MDPI 2017-07-03 /pmc/articles/PMC6152123/ /pubmed/28671638 http://dx.doi.org/10.3390/molecules22071101 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Touaibia, Mohamed
Krammer, Eva-Maria
Shiao, Tze C.
Yamakawa, Nao
Wang, Qingan
Glinschert, Anja
Papadopoulos, Alex
Mousavifar, Leila
Maes, Emmanuel
Oscarson, Stefan
Vergoten, Gerard
Lensink, Marc F.
Roy, René
Bouckaert, Julie
Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title_full Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title_fullStr Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title_full_unstemmed Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title_short Sites for Dynamic Protein-Carbohydrate Interactions of O- and C-Linked Mannosides on the E. coli FimH Adhesin
title_sort sites for dynamic protein-carbohydrate interactions of o- and c-linked mannosides on the e. coli fimh adhesin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6152123/
https://www.ncbi.nlm.nih.gov/pubmed/28671638
http://dx.doi.org/10.3390/molecules22071101
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