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dc.creatorKantsadi, A. L.en
dc.creatorHayes, J. M.en
dc.creatorManta, S.en
dc.creatorSkamnaki, V. T.en
dc.creatorKiritsis, C.en
dc.creatorPsarra, A. M. G.en
dc.creatorKoutsogiannis, Z.en
dc.creatorDimopoulou, A.en
dc.creatorTheofanous, S.en
dc.creatorNikoleousakos, N.en
dc.creatorZoumpoulakis, P.en
dc.creatorKontou, M.en
dc.creatorPapadopoulos, G.en
dc.creatorZographos, S. E.en
dc.creatorKomiotis, D.en
dc.creatorLeonidas, D. D.en
dc.date.accessioned2015-11-23T10:32:36Z
dc.date.available2015-11-23T10:32:36Z
dc.date.issued2012
dc.identifier10.1002/cmdc.201100533
dc.identifier.issn1860-7179
dc.identifier.urihttp://hdl.handle.net/11615/28884
dc.description.abstractC5 halogen substituted glucopyranosyl nucleosides (1-(beta-D-glucopyranosyl)-5-X-uracil; X=Cl, Br, I) have been discovered as some of the most potent active site inhibitors of glycogen phosphorylase (GP), with respective Ki values of 1.02, 3.27, and 1.94 mu M. The ability of the halogen atom to form intermolecular electrostatic interactions through the s-hole phenomenon rather than through steric effects alone forms the structural basis of their improved inhibitory potential relative to the unsubstituted 1-(beta-D-glucopyranosyl)uracil (Ki=12.39 mu M), as revealed by X-ray crystallography and modeling calculations exploiting quantum mechanics methods. Good agreement was obtained between kinetics results and relative binding affinities calculated by QM/MM-PBSA methodology for various substitutions at C5. Ex vivo experiments demonstrated that the most potent derivative (X=Cl) toward purified GP has no cytotoxicity and moderate inhibitory potency at the cellular level. In accordance, ADMET property predictions were performed, and suggest decreased polar surface areas as a potential means of improving activity in the cell.en
dc.source.uri<Go to ISI>://WOS:000302073100020
dc.subjectbiological chemistryen
dc.subjectchemical biologyen
dc.subjectglycogen phosphorylaseen
dc.subjecthalogenen
dc.subjectbondingen
dc.subjectQMen
dc.subjectMM-PBSAen
dc.subjectX-ray diffractionen
dc.subjectHEPATIC GLUCOSE-PRODUCTIONen
dc.subjectPROTEIN-LIGAND COMPLEXESen
dc.subjectPHARMACOLOGICALen
dc.subjectINHIBITIONen
dc.subjectDRUG DISCOVERYen
dc.subjectBASIS-SETSen
dc.subjectBINDINGen
dc.subjectDESIGNen
dc.subjectDERIVATIVESen
dc.subjectCHEMISTRYen
dc.subjectBONDSen
dc.subjectChemistry, Medicinalen
dc.subjectPharmacology & Pharmacyen
dc.titleThe s-Hole Phenomenon of Halogen Atoms Forms the Structural Basis of the Strong Inhibitory Potency of C5 Halogen Substituted Glucopyranosyl Nucleosides towards Glycogen Phosphorylase ben
dc.typejournalArticleen


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