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Validated comparative QSAR modelling of 104 CETP inhibitors identifies key structural drivers of potency (Comput Biol Med 2013)
Original title: Cholesteryl ester transfer protein inhibitors in coronary heart disease: Validated comparative QSAR modeling of N, N-disubstituted trifluoro-3-amino-2-propanols
Researchers built and cross-validated four types of quantitative structure-activity relationship models, 2D-QSAR, hologram QSAR, comparative molecular field analysis (CoMFA), and comparative molecular similarity analysis (CoMSIA), on 104 cholesteryl ester transfer protein (CETP) inhibitors. The best 2D-QSAR model achieved q2 of 0.794 and R2pred of 0.796, with unsaturation, branching, and van der Waals volumes identified as important structural contributors. CoMFA and CoMSIA models highlighted steric factors at substituted phenoxy and tetrafluoroethoxy groups and electropositive factors at the difluoromethyl group as important, with the 3D-QSAR results validating the 2D-QSAR and hologram QSAR findings. The authors conclude this multi-method validated modelling approach may help guide the design of more potent CETP inhibitors.
Original abstract
Cholesteryl ester transfer protein (CETP) converts high density lipoprotein cholesterol to low density lipoproteins. It is a promising target for treatment of coronary heart disease. Two dimensional quantitative structure activity relationship (2D-QSAR), hologram QSAR (HQSAR) studies and comparative molecular field analysis (CoMFA) as well as comparative molecular similarity analysis (CoMSIA) were performed on 104 CETP inhibitors. The statistical qualities of generated models were justified by internal and external validation, i.e., q(2) and R(2)pred respectively. The best 2D-QSAR model was obtained with q(2) and R(2)pred values of 0.794 and 0.796 respectively. The 2D-QSAR study suggests that unsaturation, branching and van der Waals volumes may play important roles. The HQSAR model showed q(2) and R(2)pred values of 0.628 and 0.550 respectively. Similarly, CoMFA model showed q(2) and R(2)pred values of 0.707 and 0.755 respectively whereas CoMSIA model was obtained with q(2) and R(2)pred values of 0.696 and 0.703 respectively. CoMFA and CoMSIA studies indicate that steric factors are important at substituted phenoxy and tetrafluoroethoxy groups whereas electropositive factors play important role at difluoromethyl group. The results of 3D-QSAR studies validate those of 2D-QSAR and HQSAR studies as well as the earlier observed SAR data. Current work may help to develop better CETP inhibitors.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.