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Two novel compounds inhibit CETP by distinct mechanisms: U-95,594 competitively blocks all lipid transfer, U-617 selectively and irreversibly blocks CE transfer (Biochemistry 1995)

Original title: Kinetics and inhibition of lipid exchange catalyzed by plasma cholesteryl ester transfer protein (lipid transfer protein)

Biochemistry · · 7

Epps DE, Greenlee KA, Harris JS, Thomas EW, Castle CK, Fisher JF, Hozak RR, Marschke CK, Melchior GW, Kézdy FJ

Large-scale screening of cholesterol backbone-containing molecules identified two compounds that inhibit CETP-catalyzed cholesteryl ester transfer. Kinetic analysis showed that U-95,594, an amino steroid, competitively inhibits CETP-catalyzed transfer of both cholesteryl esters and triglycerides, from HDL as well as from synthetic microemulsions. In contrast, U-617, an organomercurial cholesterol derivative, competitively inhibits transfer of cholesteryl ester from either donor but has no effect on triglyceride transfer. Beyond this rapid, competitive inhibition of cholesteryl ester transfer, U-617 also slowly and reversibly reacts with CETP to produce an additional 10-fold decrease in cholesteryl ester transfer activity, again without affecting triglyceride transfer.

Read the paper (DOI)PubMed

Original abstract

The cholesteryl ester transfer protein-catalyzed cholesteryl ester transfer is inhibited by two compounds identified by a large-scale screening of cholesterol backbone-containing molecules. Kinetic analysis shows that U-95,594, an amino steroid, inhibits competitively the cholesteryl ester transfer protein-catalyzed transfer of both cholesteryl esters and triglycerides, as well from high-density lipoproteins as from synthetic microemulsions. In contrast, U-617, an organomercurial derivative of cholesterol, inhibits competitively the transfer of cholesteryl ester from either donor but is without any effect on triglyceride transfer. In addition to the rapid, competitive inhibition of cholesteryl ester transfer, U-617 also slowly and reversibly reacts with cholesteryl ester transfer protein to produce an additional 10-fold decrease in cholesteryl ester transfer activity but, again, without effect on triglyceride transfer.

the classHDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.