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Evidence for Novel Action at the Cell-Binding Site of Human Angiogenin Revealed by Heteronuclear NMR Spectroscopy, in silico and in vivo Studies

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Auteur
Chatzileontiadou D.S.M., Tsika A.C., Diamantopoulou Z., Delbé J., Badet J., Courty J., Skamnaki V.T., Parmenopoulou V., Komiotis D., Hayes J.M., Spyroulias G.A., Leonidas D.D.
Date
2018
Language
en
DOI
10.1002/cmdc.201700688
Sujet
angiogenin
purine nucleotide
pyrimidine nucleoside
angiogenin
pancreatic ribonuclease
Article
cell adhesion
chemical structure
computer model
heteronuclear nuclear magnetic resonance
human
in vivo study
molecular docking
molecular dynamics
predictive value
priority journal
protein interaction
angiogenesis
animal
antagonists and inhibitors
binding site
cell line
chemistry
chick embryo
chorioallantois
computer simulation
drug effect
nuclear magnetic resonance
structure activity relation
vascularization
Animals
Binding Sites
Cell Line
Chick Embryo
Chorioallantoic Membrane
Computer Simulation
Humans
Molecular Dynamics Simulation
Neovascularization, Physiologic
Nuclear Magnetic Resonance, Biomolecular
Pyrimidine Nucleosides
Ribonuclease, Pancreatic
Structure-Activity Relationship
John Wiley and Sons Ltd
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Résumé
A member of the ribonuclease A superfamily, human angiogenin (hAng) is a potent angiogenic factor. Heteronuclear NMR spectroscopy combined with induced-fit docking revealed a dual binding mode for the most antiangiogenic compound of a series of ribofuranosyl pyrimidine nucleosides that strongly inhibit hAng's angiogenic activity in vivo. While modeling suggests the potential for simultaneous binding of the inhibitors at the active and cell-binding sites, NMR studies indicate greater affinity for the cell-binding site than for the active site. Additionally, molecular dynamics simulations at 100 ns confirmed the stability of binding at the cell-binding site with the predicted protein–ligand interactions, in excellent agreement with the NMR data. This is the first time that a nucleoside inhibitor is reported to completely inhibit the angiogenic activity of hAng in vivo by exerting dual inhibitory activity on hAng, blocking both the entrance of hAng into the cell and its ribonucleolytic activity. © 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
URI
http://hdl.handle.net/11615/72648
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]
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