Deficiency of Cholesteryl Ester Transfer Protein Protects Against Atherosclerosis in Rabbits

Author:

Zhang Jifeng1,Niimi Manabu1,Yang Dongshan1,Liang Jingyan1,Xu Jie1,Kimura Tokuhide1,Mathew Anna V.1,Guo Yanhong1,Fan Yanbo1,Zhu Tianqing1,Song Jun1,Ackermann Rose1,Koike Yui1,Schwendeman Anna1,Lai Liangxue1,Pennathur Subramaniam1,Garcia-Barrio Minerva1,Fan Jianglin1,Chen Y. Eugene1

Affiliation:

1. From the Center for Advanced Models for Translational Sciences and Therapeutics, Department of Internal Medicine (J.Z., D.Y., J.L., J.X., Y.G., Y.F., T.Z., J.S., Y.K., M.G.-B., Y.E.C.), Department of Internal Medicine, Nephrology (A.V.M., S.P.), University of Michigan Medical Center, Ann Arbor; Department of Molecular Pathology, Faculty of Medicine, Graduate School of Medical Sciences, University of Yamanashi, Japan (M.N., T.K., J.F.); Department of Pharmaceutical Sciences, Biointerfaces Institute,...

Abstract

Objective— CETP (cholesteryl ester transfer protein) plays an important role in lipoprotein metabolism; however, whether inhibition of CETP activity can prevent cardiovascular disease remains controversial. Approach and Results— We generated CETP knockout (KO) rabbits by zinc finger nuclease gene editing and compared their susceptibility to cholesterol diet–induced atherosclerosis to that of wild-type (WT) rabbits. On a chow diet, KO rabbits showed higher plasma levels of high-density lipoprotein (HDL) cholesterol than WT controls, and HDL particles of KO rabbits were essentially rich in apolipoprotein AI and apolipoprotein E contents. When challenged with a cholesterol-rich diet for 18 weeks, KO rabbits not only had higher HDL cholesterol levels but also lower total cholesterol levels than WT rabbits. Analysis of plasma lipoproteins revealed that reduced plasma total cholesterol in KO rabbits was attributable to decreased apolipoprotein B–containing particles, while HDLs remained higher than that in WT rabbits. Both aortic and coronary atherosclerosis was significantly reduced in KO rabbits compared with WT rabbits. Apolipoprotein B–depleted plasma isolated from CETP KO rabbits showed significantly higher capacity for cholesterol efflux from macrophages than that from WT rabbits. Furthermore, HDLs isolated from CETP KO rabbits suppressed tumor necrosis factor-α–induced vascular cell adhesion molecule 1 and E-selectin expression in cultured endothelial cells. Conclusions— These results provide evidence that genetic ablation of CETP activity protects against cholesterol diet–induced atherosclerosis in rabbits.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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