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Mechanisms

Steered molecular dynamics show torcetrapib and anacetrapib block CETP by physically plugging its lipid-transfer tunnel (Biochemistry 2019)

Original title: Steering the Lipid Transfer To Unravel the Mechanism of Cholesteryl Ester Transfer Protein Inhibition

Biochemistry · · 5

Dixit SM, Ahsan M, Senapati S

Cryo-electron microscopy had suggested CETP penetrates its N- and C-terminal domains into HDL and LDL to form a ternary complex enabling lipid transfer, but the molecular mechanism by which inhibitors block this transfer was unclear, a question sharpened by the low potency and severe side effects of torcetrapib and anacetrapib. This study used steered molecular dynamics simulations to model how these inhibitors interfere with the neutral lipid transfer mechanism of CETP. The simulations showed inhibitors physically occlude the lipid-transfer tunnel, creating a high energy barrier to transfer, and also induce conformational changes in CETP that impede cholesteryl ester passage and expose protein residues that disrupt the normally optimal hydrophobicity of the tunnel for lipid movement. The authors present these atomic-level details as a foundation for designing safer, more effective CETP inhibitors, a purely computational mechanistic study.

Read the paper (DOI)PubMed

Original abstract

Human plasma cholesteryl ester transfer protein (CETP) mediates the transfer of neutral lipids from antiatherogenic high-density lipoproteins (HDLs) to proatherogenic low-density lipoproteins (LDLs). Recent cryo-electron microscopy studies have suggested that CETP penetrates its N- and C-terminal domains in HDL and LDL to form a ternary complex, which facilitates the lipid transfer between different lipoproteins. Inhibition of CETP lipid transfer activity has been shown to increase the plasma HDL-C levels and, therefore, became an effective strategy for combating cardiovascular diseases. Thus, understanding the molecular mechanism of inhibition of lipid transfer through CETP is of paramount importance. Recently reported inhibitors, torcetrapib and anacetrapib, exhibited low potency in addition to severe side effects, which essentially demanded a thorough knowledge of the inhibition mechanism. Here, we employ steered molecular dynamics simulations to understand how inhibitors interfere with the neutral lipid transfer mechanism of CETP. Our study revealed that inhibitors physically occlude the tunnel posing a high energy barrier for lipid transfer. In addition, inhibitors bring about the conformational changes in CETP that hamper CE passage and expose protein residues that disrupt the optimal hydrophobicity of the CE transfer path. The atomic level details presented here could accelerate the designing of safe and efficacious CETP inhibitors.

mechanismspharmacology

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