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1.
Bioorg Chem ; 102: 104003, 2020 09.
Article in English | MEDLINE | ID: mdl-32771768

ABSTRACT

Glycogen phosphorylase (GP) is an important target for the development of new anti-hyperglycaemic agents. Flavonoids are novel inhibitors of GP, but their mode of action is unspecific in terms of the GP binding sites involved. Towards design of synthetic flavonoid analogues acting specifically at the inhibitor site and to exploit the site's hydrophobic pocket, chrysin has been employed as a lead compound for the in silico screening of 1169 new analogues with different B ring substitutions. QM/MM-PBSA binding free energy calculations guided the final selection of eight compounds, subsequently synthesised using a Baker-Venkataraman rearrangement-cyclisation approach. Kinetics experiments against rabbit muscle GPa and GPb together with human liver GPa, revealed three of these compounds (11, 20 and 43) among the most potent that bind at the site (Ki s < 4 µM for all three isoforms), and more potent than previously reported natural flavonoid inhibitors. Multiple inhibition studies revealed binding exclusively at the inhibitor site. The binding is synergistic with glucose suggesting that inhibition could be regulated by blood glucose levels and would decrease as normoglycaemia is achieved. Compound 43 was an effective inhibitor of glycogenolysis in hepatocytes (IC50 = 70 µM), further promoting these compounds for optimization of their drug-like potential. X-ray crystallography studies revealed the B-ring interactions responsible for the observed potencies.


Subject(s)
Crystallography, X-Ray/methods , Diabetes Mellitus, Type 2/drug therapy , Flavonoids/therapeutic use , Glycogen Phosphorylase/antagonists & inhibitors , Hyperglycemia/drug therapy , Animals , Biological Products , Humans , Models, Molecular , Rabbits , Structure-Activity Relationship
2.
J Med Chem ; 62(13): 6116-6136, 2019 07 11.
Article in English | MEDLINE | ID: mdl-31251604

ABSTRACT

Epimeric series of aryl-substituted glucopyranosylidene-spiro-imidazolinones, an unprecedented new ring system, were synthesized from the corresponding Schiff bases of O-perbenzoylated (gluculopyranosylamine)onamides by intramolecular ring closure of the aldimine moieties with the carboxamide group elicited by N-bromosuccinimide in pyridine. Test compounds were obtained by Zemplén O-debenzoylation. Stereochemistry and ring tautomers of the new compounds were investigated by NMR, time-dependent density functional theory (TDDFT)-electronic circular dichroism, and DFT-NMR methods. Kinetic studies with rabbit muscle and human liver glycogen phosphorylases showed that the (R)-imidazolinones were 14-216 times more potent than the (S) epimers. The 2-naphthyl-substituted (R)-imidazolinone was the best inhibitor of the human enzyme (Ki 1.7 µM) and also acted on HepG2 cells (IC50 177 µM). X-ray crystallography revealed that only the (R) epimers bound in the crystal. Their inhibitory efficacy is based on the hydrogen-bonding interactions of the carbonyl oxygen and the NH of the imidazolinone ring.


Subject(s)
Enzyme Inhibitors/pharmacology , Glucosides/pharmacology , Glycogen Phosphorylase/antagonists & inhibitors , Imidazolines/pharmacology , Spiro Compounds/pharmacology , Animals , Catalytic Domain , Crystallography, X-Ray , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/metabolism , Glucosides/chemical synthesis , Glucosides/metabolism , Glycogen Phosphorylase/chemistry , Glycogen Phosphorylase/metabolism , Hep G2 Cells , Humans , Hydrogen Bonding , Imidazolines/chemical synthesis , Imidazolines/metabolism , Kinetics , Models, Molecular , Molecular Conformation , Protein Binding , Rabbits , Spiro Compounds/chemical synthesis , Spiro Compounds/metabolism , Stereoisomerism
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