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Circulation Research. 2009
Published online before print April 9, 2009, doi: 10.1161/CIRCRESAHA.108.192229
A more recent version of this article appeared on May 22, 2009
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Submitted on December 8, 2008
Revised on March 31, 2009
Accepted on April 1, 2009

Human Paraoxonase Gene Cluster Transgenic Overexpression Represses Atherogenesis and Promotes Atherosclerotic Plaque Stability in ApoE-Null Mice

Zhi-Gang She ; Wei Zheng ; Yu-Sheng Wei ; Hou-Zao Chen ; Ai-Bing Wang ; Hong-Liang Li ; Guang Liu ; Ran Zhang ; Jin-Jing Liu ; William B. Stallcup ; Zhongjun Zhou ; De-Pei Liu *; and Chih-Chuan Liang

From the National Laboratory of Medical Molecular Biology (Z.-G.S., W.Z., Y.-S.W., H.-Z.C., A.-B.W., H.-L.L., G.L., R.Z., J.-J.L., D.-P.L., C.-C.L.), Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China; Burnham Institute for Medical Research (Z.-G.S., W.B.S.), Cancer Center, La Jolla, Calif; and Department of Biochemistry (Z.Z.), The University of Hong Kong, China.

* To whom correspondence should be addressed. E-mail: liudp{at}pumc.edu.cn.

The paraoxonase (PON) gene cluster consists of the PON1, PON2, and PON3 genes, each of which can individually inhibit atherogenesis. To analyze the functions of the PON gene cluster (PC) in atherogenesis and plaque stability, human PC transgenic (Tg) mice were generated using bacterial artificial chromosome. The high-density lipoprotein from Tg mice exhibited increased paraoxonase activity. When crossed to the ApoE-null background and challenged by high-fat diet, PC Tg/ApoE-null mice formed significantly fewer atherosclerotic lesions. However overexpression of the PC transgene had no additive effect on atherosclerosis compared to the overexpression of the single PON1 or PON3 transgene. Plaques from PC Tg/ApoE-null mice exhibited increased levels of collagen and smooth muscle cells, and reduced levels of macrophages and lipid, compared with those from ApoE-null mice, indicating lesions of PC Tg/ApoE-null mice had characteristics of more stable plaques than those of ApoE-null mice. PC transgene enhanced high-density lipoprotein ability to protect low-density lipoprotein against oxidation in vitro. Serum intercellular adhesion molecule-1 and monocyte chemoattractant protein-1 were also repressed by PC transgene. Proatherogenic reactions of Tg mouse peritoneal macrophages induced by oxidized low-density lipoprotein were inhibited by PC transgene, as indicated by reduced reactive oxygen species generation, inflammation, matrix metalloproteinase-9 expression, and foam cell formation. Our results demonstrate that the PC transgene not only represses atherogenesis but also promotes atherosclerotic plaque stability in vivo. PC may therefore be a useful target for atherosclerosis treatment.


Key words: atherosclerosis • plaques stability • macrophages • paraoxonase cluster