Redox-sensitive regulation of LOX-1 gene expression in vascular endothelium

被引:116
作者
Nagase, M
Ando, K
Nagase, T
Kaname, S
Sawamura, T
Fujita, T
机构
[1] Univ Tokyo, Sch Med, Dept Internal Med, Bunkyo Ku, Tokyo 1128688, Japan
[2] Univ Tokyo, Grad Sch Med, Dept Plast & Reconstruct Surg, Bunkyo Ku, Tokyo 1138655, Japan
[3] Natl Cardiovasc Ctr, Res Inst, Dept Biosci, Osaka 5658565, Japan
关键词
oxidative stress; endothelial dysfunction; hypertension; atherosclerosis; reactive oxygen species; homocysteine; angiotensin II; antioxidants; oxidized low-density lipoprotein;
D O I
10.1006/bbrc.2001.4374
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oxidative stress has been implicated in atherosclerosis and its underlying conditions. LOX-1 is a novel endothelial receptor for oxidized low-density lipoprotein which might mediate endothelial dysfunction and subsequent atherogenesis. In the present study, we examined LOX-1 gene regulation by oxidative stress. First, superoxide anions generated by hypoxanthine and xanthine oxidase as well as hydrogen peroxide increased LOX-1 mRNA expression in cultured aortic endothelial cells. Homocysteine, an atherogenic substance believed to exert its effects through oxidative stress, enhanced endothelial LOX-1 gene expression, which was suppressed by N-acetylcysteine. Second, rats receiving angiotensin II for 10 days manifested hypertension and LOX-1 upregulation in aortic endothelium via AT1 receptor. Tempo, a superoxide dismutase mimetic, alleviated LOX-1 augmentation induced by angiotensin II. These results indicated redox-sensitive upregulation of LOX-1 mRNA in both in vitro and in vivo systems, suggesting its potential role in atherosclerosis. (C) 2001 Academic Press.
引用
收藏
页码:720 / 725
页数:6
相关论文
共 27 条
[1]   SALT SENSITIVITY IN HYPERTENSIVE RATS WITH ANGIOTENSIN-II ADMINISTRATION [J].
ANDO, K ;
SATO, Y ;
FUJITA, T .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (05) :R1012-R1016
[2]   Induction of lectin-like oxidized LDL receptor by oxidized LDL and lysophosphatidylcholine in cultured endothelial cells [J].
Aoyama, T ;
Fujiwara, H ;
Masaki, T ;
Sawamura, T .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1999, 31 (12) :2101-2114
[3]   Increased expression of lectinlike oxidized low density lipoprotein receptor-1 in initial atherosclerotic lesions of Watanabe heritable hyperlipidemic rabbits [J].
Chen, MY ;
Kakutani, M ;
Minami, M ;
Kataoka, H ;
Kume, N ;
Narumiya, S ;
Kita, T ;
Masaki, T ;
Sawamura, T .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2000, 20 (04) :1107-1115
[4]   Oxidized low density lipoprotein (ox-LDL) binding to ox-LDL receptor-1 in endothelial cells induces the activation of NF-κB through an increased production of intracellular reactive oxygen species [J].
Cominacini, L ;
Fratta Pasini, A ;
Garbin, U ;
Davoli, A ;
Tosetti, ML ;
Campagnola, M ;
Rigoni, A ;
Pastorino, AM ;
Lo Cascio, V ;
Sawamura, T .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (17) :12633-12638
[5]   Molecular therapies for vascular diseases [J].
Gibbons, GH ;
Dzau, VJ .
SCIENCE, 1996, 272 (5262) :689-693
[6]   ANGIOTENSIN-II STIMULATES NADH AND NADPH OXIDASE ACTIVITY IN CULTURED VASCULAR SMOOTH-MUSCLE CELLS [J].
GRIENDLING, KK ;
MINIERI, CA ;
OLLERENSHAW, JD ;
ALEXANDER, RW .
CIRCULATION RESEARCH, 1994, 74 (06) :1141-1148
[7]   Expression of lectinlike oxidized low-density lipoprotein receptor-1 in human atherosclerotic lesions [J].
Kataoka, H ;
Kume, N ;
Miyamoto, S ;
Minami, M ;
Moriwaki, H ;
Murase, T ;
Sawamura, T ;
Masaki, T ;
Hashimoto, N ;
Kita, T .
CIRCULATION, 1999, 99 (24) :3110-3117
[8]   LOX-1, a possible clue to the missing link between hypertension and atherogenesis [J].
Kita, T .
CIRCULATION RESEARCH, 1999, 84 (09) :1113-1115
[9]   Inducible expression of lectin-like oxidized LDL receptor-1 in vascular endothelial cells [J].
Kume, N ;
Murase, T ;
Moriwaki, H ;
Aoyama, T ;
Sawamura, T ;
Masaki, T ;
Kita, T .
CIRCULATION RESEARCH, 1998, 83 (03) :322-327
[10]   Oxidative stress as a regulator of gene expression in the vasculature [J].
Kunsch, C ;
Medford, RM .
CIRCULATION RESEARCH, 1999, 85 (08) :753-766