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Duff Memorial Lecture synthesizes how CETP and PLTP knockouts revealed the liver pathways governing HDL catabolism (Arterioscler Thromb Vasc Biol 2000)

Original title: 1999 George Lyman Duff memorial lecture: lipid transfer proteins, HDL metabolism, and atherogenesis

Arterioscler Thromb Vasc Biol · · 9

Tall AR, Jiang Xc, Luo Y, Silver D

This 1999 George Lyman Duff Memorial Lecture reviews how the transfer of HDL cholesterol to the liver occurs via three catabolic pathways: the indirect CETP-mediated pathway, the selective scavenger receptor BI uptake pathway, and a particulate HDL uptake pathway, with the functions of the lipid transfer proteins CETP and phospholipid transfer protein (PLTP) elucidated through genetic approaches in humans and mice. Human CETP deficiency is associated with increased HDL levels but appears to increase coronary artery disease risk, while PLTP deficiency from gene knockout in mice decreases HDL levels by reducing phospholipid transfer from triglyceride-rich lipoproteins into HDL. Obese (ob/ob) mice, with markedly increased HDL levels, serve as a model of defective hepatic HDL catabolism: in wild-type mouse hepatocytes, HDL undergoes extensive uptake, resecretion, and selective cholesteryl ester uptake during recycling, processes defective in ob/ob mice, suggesting HDL recycling is central to determining plasma HDL levels.

Read the paper (DOI)PubMed

Original abstract

Plasma high density lipoprotein (HDL) levels show an inverse relationship to atherogenesis, in part reflecting the role of HDL in mediating reverse cholesterol transport. The transfer of HDL cholesterol to the liver involves 3 catabolic pathways: the indirect, cholesteryl ester transfer protein (CETP)-mediated pathway, the selective uptake (scavenger receptor BI) pathway, and a particulate HDL uptake pathway. The functions of the lipid transfer proteins (CETP and phospholipid transfer protein) in HDL metabolism have been elucidated by genetic approaches in humans and mice. Human CETP deficiency is associated with increased HDL levels but appears to increase coronary artery disease risk. Phospholipid transfer protein deficiency, produced by gene knockout in mice, results in decreased HDL levels, reflecting decreased transfer of phospholipids from triglyceride-rich lipoproteins into HDL. Obese (ob/ob) mice have markedly increased HDL levels and represent an interesting model of defective HDL catabolism in the liver. In hepatocytes of wild-type mice, there is extensive uptake and resecretion of HDL and selective uptake of cholesteryl ester from HDL during recycling. In ob/ob mice, these processes are defective, suggesting that HDL recycling plays an important role in holo-HDL catabolism, selective uptake, and the determination of plasma HDL levels.

geneticsHDL biology

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