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Anacetrapib

Anacetrapib binds CETP reversibly while dalcetrapib binds covalently, explaining their different inhibitory kinetics (J Lipid Res 2010)

Original title: Biochemical characterization of cholesteryl ester transfer protein inhibitors

J Lipid Res · · 7

Ranalletta M, Bierilo KK, Chen Y, Milot D, Chen Q, Tung E, Houde C, Elowe NH, Garcia-Calvo M, Porter G, Eveland S, Frantz-Wattley B et al.

To understand the mechanism of CETP inhibition, this study compared the biochemical properties of anacetrapib against structurally distinct CETP inhibitors torcetrapib and dalcetrapib. Anacetrapib and torcetrapib inhibited CETP-mediated cholesteryl ester and triglyceride transfer with similar potency, while dalcetrapib was significantly less potent. Inhibition by anacetrapib and torcetrapib was not time-dependent, but the potency of dalcetrapib significantly increased with extended preincubation. All three compounds competed with one another for binding CETP, but anacetrapib bound reversibly while dalcetrapib bound covalently to CETP, and dalcetrapib was additionally found to covalently label both human and mouse plasma proteins more broadly. Each inhibitor induced tight binding of CETP to HDL, indicating that all three promote formation of a CETP-HDL complex as their shared mechanism of inhibiting CETP activity, despite their differing binding chemistries.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) has been identified as a novel target for increasing HDL cholesterol levels. In this report, we describe the biochemical characterization of anacetrapib, a potent inhibitor of CETP. To better understand the mechanism by which anacetrapib inhibits CETP activity, its biochemical properties were compared with CETP inhibitors from distinct structural classes, including torcetrapib and dalcetrapib. Anacetrapib and torcetrapib inhibited CETP-mediated cholesteryl ester and triglyceride transfer with similar potencies, whereas dalcetrapib was a significantly less potent inhibitor. Inhibition of CETP by both anacetrapib and torcetrapib was not time dependent, whereas the potency of dalcetrapib significantly increased with extended preincubation. Anacetrapib, torcetrapib, and dalcetrapib compete with one another for binding CETP; however anacetrapib binds reversibly and dalcetrapib covalently to CETP. In addition, dalcetrapib was found to covalently label both human and mouse plasma proteins. Each CETP inhibitor induced tight binding of CETP to HDL, indicating that these inhibitors promote the formation of a complex between CETP and HDL, resulting in inhibition of CETP activity.

anacetrapibdalcetrapibmechanismstorcetrapib

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