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HDL biology

A rapid 6-hour HDL subfractionation method reveals HDL has a dual role in oxidation: CETP-dependent prooxidant during VLDL oxidation, antioxidant during LDL oxidation (J Lipid Res 2007)

Original title: High density lipoprotein subfractions: isolation, composition, and their duplicitous role in oxidation

J Lipid Res · · 7

McPherson PA, Young IS, McKibben B, McEneny J

A new method subfractionates HDL from plasma into HDL2 and HDL3 in only 6 hours, a substantial improvement over lengthy ultracentrifugation-based methods, enabling assessment of lipid and protein composition and susceptibility to oxidation, alone and combined with VLDL and LDL. The study reports for the first time a prooxidant role for HDL during VLDL oxidation, in which HDL donates preformed hydroperoxides to VLDL through a cholesteryl ester transfer protein (CETP)-dependent process, while the participation of HDL in LDL oxidation reinforced its classic antioxidant role. Lecithin-cholesterol acyltransferase (LCAT), the second major HDL-associated enzyme, was similarly implicated, acting as a prooxidant during VLDL oxidation but an antioxidant during LDL oxidation, identifying a potentially duplicitous role for HDL in atherosclerosis pathogenesis attributable to both CETP and LCAT.

Read the paper (DOI)PubMed

Original abstract

The plasma HDLs represent a major class of cholesterol-transporting lipoprotein that can be divided into two distinct subfractions, HDL(2) and HDL(3), by ultracentrifugation. Existing methods for the subfractionation of HDL requires lengthy ultracentrifugations, making them unappealing for large-scale studies. We describe a method that subfractionates HDL from plasma in only 6 h, representing a substantial decrease in total isolation time. The subfractions so isolated were assessed for a variety of lipid and protein components, in addition to their susceptibility to oxidation, both alone and in combination with VLDL and LDL. We report for the first time a prooxidant role for HDL during VLDL oxidation, in which HDL donates preformed hydroperoxides to VLDL in a cholesteryl ester transfer protein (CETP)-dependent process. Examination of the participation of HDL in LDL oxidation has reinforced its classic role as a potent antioxidant. Furthermore, we have also implicated the second major HDL-associated enzyme, LCAT, in these processes, whereby it acts as a potent prooxidant during VLDL oxidation but as an antioxidant during LDL oxidation. Thus, we have identified a potentially duplicitous role for HDL in the pathogenesis of atherosclerosis, attributable to both CETP and LCAT.

HDL biologymechanisms

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