Endothelium-specific GTP cyclohydrolase I overexpression attenuates blood pressure progression in salt-sensitive low-renin hypertension

被引:103
作者
Du, Yan-Hua [1 ,2 ,3 ]
Guan, Yong-Yuan [3 ]
Alp, Nicholas J. [4 ]
Channon, Keith M. [4 ]
Chen, Alex F. [1 ,2 ]
机构
[1] Michigan State Univ, Neurosci Program, E Lansing, MI 48824 USA
[2] Michigan State Univ, Cell & Mol Biol Program, E Lansing, MI 48824 USA
[3] Sun Yat Sen Univ, Dept Pharmacol, Guangzhou, Peoples R China
[4] Univ Oxford, John Radcliffe Hosp, Dept Cardiovasc Med, Oxford OX3 9DU, England
关键词
GTP cyclohydrolase; 5,6,7,8-tetrahydrobiopterin; oxidative stress; mesenteric arteries; hypertension;
D O I
10.1161/CIRCULATIONAHA.107.748236
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background- Tetrahydrobiopterin (BH4) is an essential cofactor of endothelial nitric oxide synthase (eNOS). When BH4 levels are decreased, eNOS becomes uncoupled to produce superoxide anion (O-2(-)) instead of NO, which contributes to endothelial dysfunction. Deoxycorticosterone acetate (DOCA) - salt hypertension is characterized by a suppressed plasma renin level due to sodium retention but manifests in eNOS uncoupling; however, how endogenous BH4 regulates blood pressure is unknown. GTP cyclohydrolase I (GTPCH I) is the rate-limiting enzyme for de novo BH4 synthesis. This study tested the hypothesis that endothelium-specific GTPCH I overexpression retards the progression of hypertension through preservation of the structure and function of resistance mesenteric arteries. Methods and Results- During 3 weeks of DOCA-salt treatment, arterial blood pressure was increased significantly in wild-type mice, as determined by radiotelemetry, but this increase was attenuated in transgenic mice with endothelium-specific GTPCH I overexpression (Tg-GCH). Arterial GTPCH I activity and BH4 levels were decreased significantly in wild-type DOCA-salt mice, but both were preserved in Tg-GCH mice despite DOCA-salt treatment. Significant remodeling of resistance mesenteric arteries (approximate to 100-mu m outside diameter) in wild-type DOCA-salt mice exists, evidenced by increased medial cross-sectional area, media thickness, and media-lumen ratio and overexpression of tenascin C, an extracellular matrix glycoprotein that contributes to hypertrophic remodeling; all of these effects were prevented in DOCA-salt - treated Tg-GCH mice. Furthermore, NO-mediated relaxation in mesenteric arteries was significantly improved in DOCA-salt - treated Tg-GCH mice, in parallel with reduced O-2(-) levels. Finally, phosphorylation of eNOS at serine residue 1177 (eNOS-(S1177)), but not its dimer-monomer ratio, was decreased significantly in wild-type DOCA-salt mice compared with sham controls but was preserved in DOCA-salt - treated Tg-GCH mice. Conclusions- These results demonstrate that endothelium-specific GTPCH I overexpression abrogates O-2(-) production and preserves eNOS phosphorylation, which results in preserved structural and functional integrity of resistance mesenteric arteries and lowered blood pressure in low-renin hypertension.
引用
收藏
页码:1045 / 1054
页数:10
相关论文
共 30 条
[21]   Distinct dimer interaction and regulation in nitric-oxide synthase types I, II, and III [J].
Panda, K ;
Rosenfeld, RJ ;
Ghosh, S ;
Meade, AL ;
Getzoff, ED ;
Stuehr, DJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (34) :31020-31030
[22]   Chronic treatment with a superoxide dismutase mimetic prevents vascular remodeling and progression of hypertension in salt-loaded stroke-prone spontaneously hypertensive rats [J].
Park, JB ;
Touyz, RM ;
Chen, X ;
Schiffrin, EL .
AMERICAN JOURNAL OF HYPERTENSION, 2002, 15 (01) :78-84
[23]   Vascular reactivity of mesenteric arteries and veins to endothelin-1 in a murine model of high blood pressure [J].
Pérez-Rivera, AA ;
Fink, GD ;
Galligan, JJ .
VASCULAR PHARMACOLOGY, 2005, 43 (01) :1-10
[24]   Reduced NOS3 phosphorylation mediates reduced NO/cGMP signaling in mesenteric arteries of deoxycorticosterone acetate-salt hypertensive rats [J].
Sasser, JM ;
Sullivan, JC ;
Elmarakby, AA ;
Kemp, BE ;
Pollock, DM ;
Pollock, JS .
HYPERTENSION, 2004, 43 (05) :1080-1085
[25]   Hydrogen peroxide is an endothelium-derived hyperpolarizing factor in animals and humans [J].
Shimokawa, H ;
Morikawa, K .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2005, 39 (05) :725-732
[26]   Primary endothelial dysfunction: Atherosclerosis [J].
Shimokawa, H .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1999, 31 (01) :23-37
[27]   Direct evidence for the importance of p130 in injury response and arterial remodeling following carotid artery ligation [J].
Sindermann, JR ;
Smith, J ;
Köbbert, C ;
Plenz, G ;
Skaletz-Rorowski, A ;
Solomon, JL ;
Fan, L ;
March, KL .
CARDIOVASCULAR RESEARCH, 2002, 54 (03) :676-683
[28]   Impaired activities of antioxidant enzymes elicit endothelial dysfunction in spontaneous hypertensive rats despite enhanced vascular nitric oxide generation [J].
Ülker, S ;
McMaster, D ;
McKeown, PP ;
Bayraktutan, U .
CARDIOVASCULAR RESEARCH, 2003, 59 (02) :488-500
[29]   Endothelial cell superoxide anion radical generation is not dependent on endothelial nitric oxide synthase-serine 1179 phosphorylation and endothelial nitric oxide synthase dimer/monomer distribution [J].
Whitsett, Jennifer ;
Martasek, Pavel ;
Zhao, Hongtao ;
Schauer, Dennis W. ;
Hatakeyama, Kazuyuki ;
Kalyanaraman, Balaraman ;
Vasquez-Vivar, Jeannette .
FREE RADICAL BIOLOGY AND MEDICINE, 2006, 40 (11) :2056-2068
[30]   Gene transfer of human guanosine 5′-triphosphate cyclohydrolase I restores vascular tetrahydrobiopterin level and endothelial function in low renin hypertension [J].
Zheng, JS ;
Yang, XQ ;
Lookingland, KJ ;
Fink, GD ;
Hesslinger, C ;
Kapatos, G ;
Kovesdi, I ;
Chen, AF .
CIRCULATION, 2003, 108 (10) :1238-1245