Identification of curcumin derivatives as human glyoxalase I inhibitors: A combination of biological evaluation, molecular docking, 3D-QSAR and molecular dynamics simulation studies

Bioorganic & Medicinal Chemistry
2011.0

Abstract

Several recent developments suggest that the human glyoxalase I (GLO I) is a potential target for anti-tumor drug development. In present study, a series of curcumin derivatives with high inhibitory activity against human GLO I were discovered. Inhibition constant (K(i)) values of compounds 8, 9, 10, 11 and 13 to GLO I are 4.600μM, 2.600μM, 3.200μM, 3.600μM and 3.600μM, respectively. To elucidate the structural features of potent inhibitors, docking-based three-dimensional structure-activity relationship (3D-QSAR) analyses were performed. Satisfactory agreement between experiment and theory suggests that comparative molecular similarity index analysis (CoMSIA) modeling exhibit much better correlation and predictive power. The cross-validated q(2) value is 0.638 while no-validation r(2) value is 0.930. Integrated with docking-based 3D-QSAR CoMSIA modeling, molecular surface property (electrostatic and steric) mapping and molecular dynamics simulation, a set of receptor-ligand binding models and bio-affinity predictive models for rational design of more potent inhibitors of GLO I are established.

Knowledge Graph

Similar Paper

Identification of curcumin derivatives as human glyoxalase I inhibitors: A combination of biological evaluation, molecular docking, 3D-QSAR and molecular dynamics simulation studies
Bioorganic & Medicinal Chemistry 2011.0
Structural investigation into the inhibitory mechanisms of indomethacin and its analogues towards human glyoxalase I
Bioorganic & Medicinal Chemistry Letters 2011.0
Curcumin analogues as possible anti-proliferative & anti-inflammatory agents
European Journal of Medicinal Chemistry 2011.0
Design, synthesis, biological evaluation and molecular docking of curcumin analogues as antioxidant, cyclooxygenase inhibitory and anti-inflammatory agents
Bioorganic & Medicinal Chemistry Letters 2005.0
Novel curcumin derivatives as P-glycoprotein inhibitors: Molecular modeling, synthesis and sensitization of multidrug resistant cells to doxorubicin
European Journal of Medicinal Chemistry 2020.0
Novel quinoline derivatives as potent in vitro α-glucosidase inhibitors: in silico studies and SAR predictions
MedChemComm 2015.0
Synthesis and biological evaluation of new curcumin derivatives as antioxidant and antitumor agents
Medicinal Chemistry Research 2013.0
Synthesis of antihyperglycemic, α-glucosidase inhibitory, and DPPH free radical scavenging furanochalcones
Medicinal Chemistry Research 2012.0
Can Small Chemical Modifications of Natural Pan-inhibitors Modulate the Biological Selectivity? The Case of Curcumin Prenylated Derivatives Acting as HDAC or mPGES-1 Inhibitors
Journal of Natural Products 2015.0
Curcumin-I Knoevenagel’s condensates and their Schiff’s bases as anticancer agents: Synthesis, pharmacological and simulation studies
Bioorganic & Medicinal Chemistry 2013.0