Mechanisms
In female mice, CETP enables an estrogen-SHP pathway raising VLDL triglyceride production and, independently, an ERalpha pathway boosting liver fat oxidation (J Lipid Res 2016)
Original title: Cholesteryl ester transfer protein alters liver and plasma triglyceride metabolism through two liver networks in female mice
Female mice naturally lack cholesteryl ester transfer protein (CETP), so the authors used transgenic CETP-expressing female mice to probe CETP's role in estrogen-driven triglyceride (TG) metabolism. Acute estrogen treatment raised plasma TGs 50%, increased TG production, and increased VLDL-synthesis gene expression in CETP females but not in nontransgenic littermates. In CETP females, estrogen enhanced expression of small heterodimer partner (SHP), a nuclear receptor regulating VLDL production, and deleting liver SHP prevented this estrogen-induced rise. Independent of estrogen, CETP expression increased liver beta-oxidation and reduced liver TG content by 60%, requiring liver estrogen receptor alpha (ERalpha). CETP thus governs at least two distinct liver networks: an SHP-dependent pathway raising VLDL-TG production with estrogen, and an ERalpha-dependent pathway lowering liver TG content.
Original abstract
Elevated plasma TGs increase risk of cardiovascular disease in women. Estrogen treatment raises plasma TGs in women, but molecular mechanisms remain poorly understood. Here we explore the role of cholesteryl ester transfer protein (CETP) in the regulation of TG metabolism in female mice, which naturally lack CETP. In transgenic CETP females, acute estrogen treatment raised plasma TGs 50%, increased TG production, and increased expression of genes involved in VLDL synthesis, but not in nontransgenic littermate females. In CETP females, estrogen enhanced expression of small heterodimer partner (SHP), a nuclear receptor regulating VLDL production. Deletion of liver SHP prevented increases in TG production and expression of genes involved in VLDL synthesis in CETP mice with estrogen treatment. We also examined whether CETP expression had effects on TG metabolism independent of estrogen treatment. CETP increased liver β-oxidation and reduced liver TG content by 60%. Liver estrogen receptor α (ERα) was required for CETP expression to enhance β-oxidation and reduce liver TG content. Thus, CETP alters at least two networks governing TG metabolism, one involving SHP to increase VLDL-TG production in response to estrogen, and another involving ERα to enhance β-oxidation and lower liver TG content. These findings demonstrate a novel role for CETP in estrogen-mediated increases in TG production and a broader role for CETP in TG metabolism.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.