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European Journal of Biochemistry|March 16, 2002
Binding of N-acetyl-N '-beta-D-glucopyranosyl urea and N-benzoyl-N '-beta-D-glucopyranosyl urea to glycogen phosphorylase b: kinetic and crystallographic studiesNikos G Oikonomakos, Magda Kosmopoulou, Spyros E Zographos, et al.Structure (London, England : 1993)|March 7, 1998
The structure of glycogen phosphorylase b with an alkyldihydropyridine-dicarboxylic acid compound, a novel and potent inhibitorS E Zographos, N G Oikonomakos, K E Tsitsanou, et al.RNA Biology|December 1, 2015
AtHESPERIN: a novel regulator of circadian rhythms with poly(A)-degrading activity in plantsCostas Delis, Afrodite Krokida, Anastasia Tomatsidou, et al.Molecules (Basel, Switzerland)|April 17, 2019
High Consistency of Structure-Based Design and X-Ray Crystallography: Design, Synthesis, Kinetic Evaluation and Crystallographic Binding Mode Determination of Biphenyl-<i>N</i>-acyl-β-d-Glucopyranosylamines as Glycogen Phosphorylase InhibitorsThomas Fischer, Symeon M Koulas, Anastasia S Tsagkarakou, et al.European Journal of Medicinal Chemistry|July 10, 2012
The binding of C5-alkynyl and alkylfurano[2,3-d]pyrimidine glucopyranonucleosides to glycogen phosphorylase b: synthesis, biochemical and biological assessmentA L Kantsadi, S Manta, A-M G Psarra, et al.Proteins|November 29, 2007
Crystallographic and computational studies on 4-phenyl-N-(beta-D-glucopyranosyl)-1H-1,2,3-triazole-1-acetamide, an inhibitor of glycogen phosphorylase: comparison with alpha-D-glucose, N-acetyl-beta-D-glucopyranosylamine and N-benzoyl-N'-beta-D-glucopyranosyl urea bindingKyra-Melinda Alexacou, Joseph M Hayes, Costas Tiraidis, et al.Biochemistry|May 17, 1994
Design of inhibitors of glycogen phosphorylase: a study of alpha- and beta-C-glucosides and 1-thio-beta-D-glucose compoundsK A Watson, E P Mitchell, L N Johnson, et al.Journal of Agricultural and Food Chemistry|August 26, 2020
Affinity Crystallography Reveals Binding of Pomegranate Juice Anthocyanins at the Inhibitor Site of Glycogen Phosphorylase: The Contribution of a Sugar Moiety to Potency and Its Implications to the Binding ModeChristina E Drakou, Chrysavgi Gardeli, Ioannis Tsialtas, et al.Chemical Biology & Drug Design|February 3, 2012
3'-axial CH2 OH substitution on glucopyranose does not increase glycogen phosphorylase inhibitory potency. QM/MM-PBSA calculations suggest whyStella Manta, Andromachi Xipnitou, Christos Kiritsis, et al.Current Topics in Medicinal Chemistry|June 20, 2015
Glycogen phosphorylase as a target for type 2 diabetes: synthetic, biochemical, structural and computational evaluation of novel N-acyl-N´-(β-D-glucopyranosyl) urea inhibitorsAnastassia L Kantsadi, Vanessa Parmenopoulou, Dimitar N Bakalov, et al.Pageof 12