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Unlike LCAT or ABCA1 mutations, heterozygous CETP mutations leave plasma sphingosine-1-phosphate and apoM levels unaffected (Atherosclerosis 2011)

Original title: Plasma levels of sphingosine-1-phosphate and apolipoprotein M in patients with monogenic disorders of HDL metabolism

Atherosclerosis · · 5

Karuna R, Park R, Othman A, Holleboom AG, Motazacker MM, Sutter I, Kuivenhoven JA, Rohrer L, Matile H, Hornemann T, Stoffel M, Rentsch KM et al.

Studying apoM-knockout and apoM-transgenic mice alongside 50 patients with seven different monogenic HDL metabolism disorders and 51 unaffected relatives, researchers quantified sphingosine-1-phosphate (S1P) and apolipoprotein M (apoM), S1P's specific HDL-bound carrier. Compared with wild-type mice, S1P fell 30% in apoM-knockout mice and rose 270% in apoM-transgenic mice. In humans, heterozygous carriers of APOA1, LCAT, or ABCA1 mutations had S1P and apoM reduced by an average of 34% and 12% respectively versus family controls, with carriers of two defective LCAT or ABCA1 alleles showing 70% and 48% reductions. By contrast, heterozygous mutations in CETP, SCARB1, LIPC, or LIPG did not significantly affect S1P or apoM concentrations, indicating CETP deficiency, unlike defects in cholesterol esterification or efflux pathways, does not disrupt this HDL-bound S1P-apoM axis.

Read the paper (DOI)PubMed

Original abstract

Background: Apolipoprotein M (apoM) has been identified as a specific sphingosine-1-phosphate (S1P) binding protein of HDL.

Objectives And Methods: To investigate the in vivo effects of disturbed apoM or HDL metabolism we quantified S1P and apoM in plasmas of wild-type, apoM-knock-out, and apoM transgenic mice as well as 50 patients with seven different monogenic disorders of HDL metabolism and their 51 unaffected relatives.

Results: Compared to wild type mice, S1P plasma levels in apoM knock-out and apoM transgenic mice were decreased by 30% and increased by 270%, respectively. Compared to family controls, S1P and apoM levels in apoB-depleted plasma were significantly decreased by in average 34% and 12%, respectively, in heterozygous carriers of mutations in APOA1, LCAT or ABCA1, and by 70% and 48%, respectively, in carriers of two defective alleles in LCAT or ABCA1. Heterozygous mutations in CETP, SCARB1, LIPC, or LIPG did not significantly affect S1P or apoM concentrations. Albumin-corrected molar S1P-to-apoM ratios varied from 0.12 to 0.8 (median 0.3) and were not affected by any mutation. S1P levels in apoB-depleted plasma correlated significantly with HDL-cholesterol and less so with apoM both if apoA-I plasma concentrations were below the median.

Conclusion: In the context of previous data, our findings can be explained by the existence of a specific apoM and S1P containing HDL subclass which contains a considerable molar excess of apoM over S1P and is critically determined by apoA-I up to a threshold concentration around the median found in a Caucasian population.

geneticsHDL biology

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