cetpinhibition.org

Mechanisms

Molecular dynamics studies show small-molecule CETP inhibitors act by physically blocking the lipid transfer tunnel (J Phys Chem B 2016)

Original title: Mechanism of Inhibition of Cholesteryl Ester Transfer Protein by Small Molecule Inhibitors

J Phys Chem B · · 4

Chirasani VR, Sankar R, Senapati S

Researchers used molecular dynamics simulations and protein-ligand docking to study how a series of recently reported small-molecule inhibitors, then in preclinical testing, block cholesteryl ester transfer protein (CETP). Hydrophobic interactions between inhibitor moieties and the residues lining the CETP core tunnel played a pivotal role, and physical occlusion of the tunnel was identified as the primary mechanism of inhibition. Bound inhibitors also increased the conformational plasticity of CETP, with principal component analysis showing a larger sampled conformational space for the CETP C-domain upon inhibitor binding, details the authors suggest could accelerate structure-based drug discovery targeting CETP for cardiovascular disease.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) facilitates the bidirectional exchange of cholesteryl esters and triglycerides between high-density lipoproteins and low- or very low-density lipoproteins. Recent studies have shown that the impairment of lipid exchange processes of CETP can be an effective strategy for the treatment of cardiovascular diseases (CVDs). Understanding the molecular mechanism of CETP inhibition has, therefore, attracted tremendous attention in recent past. In this study, we explored the detailed mechanism of CETP inhibition by a series of recently reported small molecule inhibitors that are currently under preclinical testing. Our results from molecular dynamics simulations and protein-ligand docking studies suggest that the hydrophobic interactions between the CETP core tunnel residues and inhibitor moieties play a pivotal role, and physical occlusion of the CETP tunnel by these small molecules is the primary mechanism of CETP inhibition. Interestingly, bound inhibitors were found to increase the plasticity of CETP, which was explained by principal component analysis that showed a larger space of sampling of CETP C-domain due to inhibitor binding. The atomic-level details presented here could help accelerate the structure-based drug-discovery processes targeting CETP for CVD therapeutics.

mechanismspharmacology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.