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High consistency of structure-based design and X-ray crystallography: Design, synthesis, kinetic evaluation and crystallographic binding mode determination of biphenyl-n-acyl-β-d-glucopyranosylamines as glycogen phosphorylase inhibitors

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Auteur
Fischer T., Koulas S.M., Tsagkarakou A.S., Kyriakis E., Stravodimos G.A., Skamnaki V.T., Liggri P.G.V., Zographos S.E., Riedl R., Leonidas D.D.
Date
2019
Language
en
DOI
10.3390/molecules24071322
Sujet
enzyme inhibitor
glucopyranosylamine
glucosamine
glycogen phosphorylase
protein binding
analogs and derivatives
antagonists and inhibitors
binding site
chemistry
drug design
enzyme active site
human
hydrogen bond
molecular model
quantitative structure activity relation
synthesis
X ray crystallography
Binding Sites
Catalytic Domain
Chemistry Techniques, Synthetic
Crystallography, X-Ray
Drug Design
Enzyme Inhibitors
Glucosamine
Glycogen Phosphorylase
Humans
Hydrogen Bonding
Models, Molecular
Protein Binding
Quantitative Structure-Activity Relationship
MDPI AG
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Résumé
Structure-based design and synthesis of two biphenyl-N-acyl-β-D-glucopyranosylamine derivatives as well as their assessment as inhibitors of human liver glycogen phosphorylase (hlGPa, a pharmaceutical target for type 2 diabetes) is presented. X-ray crystallography revealed the importance of structural water molecules and that the inhibitory efficacy correlates with the degree of disturbance caused by the inhibitor binding to a loop crucial for the catalytic mechanism. The in silico-derived models of the binding mode generated during the design process corresponded very well with the crystallographic data. © 2019 by the authors.
URI
http://hdl.handle.net/11615/71596
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