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CETP deficiency produces giant HDL particles carrying nearly every major apolipoprotein except apoA-IV (J Lipid Res 2004)

Original title: Apolipoprotein composition of HDL in cholesteryl ester transfer protein deficiency

J Lipid Res · · 6

Asztalos BF, Horvath KV, Kajinami K, Nartsupha C, Cox CE, Batista M, Schaefer EJ, Inazu A, Mabuchi H

This study compared HDL subpopulations, determined by two-dimensional gel electrophoresis and immunoblotting for apoA-I, apoA-II, apoA-IV, apoCs, and apoE, in heterozygous, compound heterozygous, and homozygous subjects for CETP deficiency versus controls. CETP mass was 30%, 63%, and over 90% lower, and HDL-cholesterol was 64%, 168%, and 203% higher, in heterozygotes, compound heterozygotes, and homozygotes respectively compared to controls. Heterozygotes had about 50% lower pre-beta-1 particles and more than double the levels of alpha-1 and pre-alpha-1 particles compared to controls, with three of five heterozygotes showing apoA-II in their alpha-1 particles, unlike controls. Compound heterozygotes and homozygotes had very large particles, not seen in controls or heterozygotes, containing apoA-I, apoA-II, apoCs, and apoE, without decreased pre-beta-1 levels. The authors hypothesize the heterozygote HDL profile, particularly high apoA-I-only alpha-1 particles, may represent an improved anti-atherogenic state, unlike the undifferentiated large particles in compound heterozygotes and homozygotes.

Read the paper (DOI)PubMed

Original abstract

Our purpose was to compare HDL subpopulations, as determined by nondenaturing two-dimensional gel electrophoresis followed by immunoblotting for apolipoprotein A-I (apoA-I), apoA-II, apoA-IV, apoCs, and apoE in heterozygous, compound heterozygous, and homozygous subjects for cholesteryl ester transfer protein (CETP) deficiency and controls. Heterozygotes, compound heterozygotes, and homozygotes had CETP masses that were 30, 63, and more than 90% lower and HDL-cholesterol values that were 64, 168, and 203% higher than those in controls, respectively. Heterozygotes had approximately 50% lower pre-beta-1 and more than 2-fold higher levels of alpha-1 and pre-alpha-1 particles than controls. Three of the five heterozygotes' alpha-1 particles also contained apoA-II, which was not seen in controls. Compound heterozygotes and homozygotes had very large particles not observed in controls and heterozygotes. These particles contained apoA-I, apoA-II, apoCs, and apoE. However, these subjects did not have decreased pre-beta-1 levels. Our data indicate that CETP deficiency results in the formation of very large HDL particles containing all of the major HDL apolipoproteins except for apoA-IV. We hypothesize that the HDL subpopulation profile of heterozygous CETP-deficient patients, especially those with high levels of alpha-1 containing apoA-I but no apoA-II, represent an improved anti-atherogenic state, although this might not be the case for compound heterozygotes and homozygotes with very large, undifferentiated HDL particles.

geneticsHDL biology

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