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HDL biology

ApoC-I identified as the natural CETP inhibitor carried on HDL (J Biol Chem 2000)

Original title: Human apolipoprotein C-I accounts for the ability of plasma high density lipoproteins to inhibit the cholesteryl ester transfer protein activity

J Biol Chem · · 8

Gautier T, Masson D, de Barros JP, Athias A, Gambert P, Aunis D, Metz-Boutigue MH, Lagrost L

Screening 30 fractions of human HDL apolipoproteins by preparative gel electrophoresis for CETP-inhibitory activity, researchers found a single 6-kDa fraction that completely inhibited CETP. Its N-terminal sequence matched human apoC-I, inhibition was fully blocked by anti-apoC-I antibodies, and mass spectrometry confirmed the inhibitor's identity as full-length apoC-I. Purified apoC-I abolished CETP activity in a concentration-dependent manner with high potency (IC50 = 100 nmol/liter), the inhibitory activity of total delipidated HDL apolipoproteins vanished after anti-apoC-I treatment, and depleting apoC-I from native plasma HDL by immunoaffinity chromatography raised cholesteryl ester transfer rates by 43% on average. Since apoC-I resides mainly on HDL rather than LDL in normolipidemic plasma, this explains HDL's specific ability to inhibit CETP activity.

Read the paper (DOI)PubMed

Original abstract

The aim of the present study was to identify the protein that accounts for the cholesteryl ester transfer protein (CETP)-inhibitory activity that is specifically associated with human plasma high density lipoproteins (HDL). To this end, human HDL apolipoproteins were fractionated by preparative polyacrylamide gradient gel electrophoresis, and 30 distinct protein fractions with molecular masses ranging from 80 down to 2 kDa were tested for their ability to inhibit CETP activity. One single apolipoprotein fraction was able to completely inhibit CETP activity. The N-terminal sequence of the 6-kDa protein inhibitor matched the N-terminal sequence of human apoC-I, the inhibition was completely blocked by specific anti-apolipoprotein C-I antibodies, and mass spectrometry analysis confirmed the identity of the isolated inhibitor with full-length human apoC-I. Pure apoC-I was able to abolish CETP activity in a concentration-dependent manner and with a high efficiency (IC(50) = 100 nmol/liter). The inhibitory potency of total delipidated HDL apolipoproteins completely disappeared after a treatment with anti-apolipoprotein C-I antibodies, and the apoC-I deprivation of native plasma HDL by immunoaffinity chromatography produced a mean 43% rise in cholesteryl ester transfer rates. The main localization of apoC-I in HDL and not in low density lipoprotein in normolipidemic plasma provides further support for the specific property of HDL in inhibiting CETP activity.

HDL biologymechanisms

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