HDL biology
CETP expression partly rescues abnormal HDL distribution but not atherosclerosis in SR-BI-deficient mice (J Biol Chem 2011)
Original title: Cholesteryl ester transfer protein expression partially attenuates the adverse effects of SR-BI receptor deficiency on cholesterol metabolism and atherosclerosis
Because the role of SR-BI in HDL metabolism may be less pronounced in humans due to CETP activity, researchers cross-bred SR-BI conditional knockout mice with CETP transgenic mice to test how CETP modifies the effects of SR-BI deficiency. CETP almost completely restored the abnormal HDL-cholesterol distribution seen in SR-BI-deficient mice, and partially corrected red blood cell and platelet count abnormalities, but did not normalize the elevated free-to-total cholesterol ratio or elevated erythrocyte cholesterol-to-phospholipid ratio, and had no impact on adrenal cholesterol metabolism in either full or liver-specific SR-BI deficiency. In diet-induced atherosclerosis studies, hepatic SR-BI deficiency accelerated aortic lesion formation both in CETP-expressing mice (4-fold) and non-CETP-expressing mice (8-fold) versus controls, with impaired macrophage-to-feces reverse cholesterol transport in SR-BI-deficient mice unaffected by CETP. The authors conclude SR-BI contributes uniquely to cholesterol metabolism and atherosclerosis susceptibility whether or not CETP is present.
Original abstract
Scavenger receptor SR-BI significantly contributes to HDL cholesterol metabolism and atherogenesis in mice. However, the role of SR-BI may not be as pronounced in humans due to cholesteryl ester transfer protein (CETP) activity. To address the impact of CETP expression on the adverse effects associated with SR-BI deficiency, we cross-bred our SR-BI conditional knock-out mouse model with CETP transgenic mice. CETP almost completely restored the abnormal HDL-C distribution in SR-BI-deficient mice. However, it did not normalize the elevated plasma free to total cholesterol ratio characteristic of hepatic SR-BI deficiency. Red blood cell and platelet count abnormalities observed in mice liver deficient for SR-BI were partially restored by CETP, but the elevated erythrocyte cholesterol to phospholipid ratio remained unchanged. Complete deletion of SR-BI was associated with diminished adrenal cholesterol stores, whereas hepatic SR-BI deficiency resulted in a significant increase in adrenal gland cholesterol content. In both mouse models, CETP had no impact on adrenal cholesterol metabolism. In diet-induced atherosclerosis studies, hepatic SR-BI deficiency accelerated aortic lipid lesion formation in both CETP-expressing (4-fold) and non-CETP-expressing (8-fold) mice when compared with controls. Impaired macrophage to feces reverse cholesterol transport in mice deficient for SR-BI in liver, which was not corrected by CETP, most likely contributed by such an increase in atherosclerosis susceptibility. Finally, comparison of the atherosclerosis burden in SR-BI liver-deficient and fully deficient mice demonstrated that SR-BI exerted an atheroprotective activity in extra-hepatic tissues whether CETP was present or not. These findings support the contention that the SR-BI pathway contributes in unique ways to cholesterol metabolism and atherosclerosis susceptibility even in the presence of CETP.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.