Genetics
CETP promotes triglyceride storage in liver and intestinal cells, unlike its fat-reducing effect in adipocytes (Lipids 2021)
Original title: Both full length-cholesteryl ester transfer protein and exon 9-deleted cholesteryl ester transfer protein promote triacylglycerol storage in cultured hepatocytes
The authors previously reported that overexpression of full-length CETP (FL-CETP), but not its exon 9-deleted variant (deltaE9-CETP), reduces triacylglycerol (TAG) content in an adipose cell line, consistent with in vivo studies linking higher FL-CETP to lower adiposity. Since increased FL-CETP is also linked to elevated hepatic lipids, this study directly tested the role of both CETP variants in hepatic lipid metabolism using adenovirus-mediated overexpression in HepG2-C3A hepatocytes. Overexpression of either FL- or deltaE9-CETP increased cellular TAG mass by 25% but reduced TAG secretion, with TAG contained in larger, more numerous lipid droplets, driven by increased fatty acid incorporation into TAG (24%) and higher de novo fatty acid (50%) and TAG (40%) synthesis. siRNA knockdown of CETP had the opposite effect, decreasing cellular TAG. The effect was reproduced in Caco-2 intestinal cells, opposite to the effect seen in adipocytes.
Original abstract
We previously reported that overexpression of full-length cholesteryl ester transfer protein (FL-CETP), but not its exon 9-deleted variant (∆E9-CETP), in an adipose cell line reduces their triacylglycerol (TAG) content. This provided mechanistic insight into several in vivo studies where FL-CETP levels are inversely correlated with adiposity. However, increased FL-CETP is also associated with elevated hepatic lipids, suggesting that the effect of CETP on cellular lipid metabolism may be tissue-specific. Here, we directly investigated the role of FL-CETP and ∆E9-CETP in hepatic lipid metabolism. FL- or ∆E9-CETP was overexpressed in HepG2-C3A by adenovirus transduction. Overexpression of either FL or ∆E9-CETP in hepatocytes increased cellular TAG mass by 25% but reduced TAG secretion. This cellular TAG was contained in larger and more numerous lipid droplets. Analysis of TAG synthetic and catabolic pathways showed that this elevated TAG content was due to increased incorporation of fatty acid into TAG (24%), and higher de novo synthesis of fatty acid (50%) and TAG from acetate (40%). siRNA knockdown of CETP had the opposite effect on TAG synthesis and lipogenesis, and decreased cellular TAG. This novel increase in cellular TAG by FL-CETP overexpression was reproduced in Caco-2 intestinal epithelial cells. We conclude that, unlike that seen in adipocyte cells, overexpression of either CETP isoform in lipoprotein-secreting cells promotes the accumulation of TAG. These data suggest that the in vivo correlation between CETP levels and hepatic steatosis can be explained, in part, by a direct effect of CETP on hepatocyte cellular metabolism.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.