Role of p22phox in angiotensin II and platelet-derived growth factor AA induced activator protein I activation in vascular smooth muscle cells

被引:21
作者
Viedt, C
Fei, JW
Krieger-Brauer, HI
Brandes, RP
Teupser, D
Kamimura, M
Katus, HA
Kreuzer, J
机构
[1] Heidelberg Univ, D-69115 Heidelberg, Germany
[2] Univ Frankfurt Klinikum, Inst Kardiovasc Physiol, D-60596 Frankfurt, Germany
[3] Univ Klinikum Leipzig, Inst Labs Med Klin Chem & Mol Diagnost, D-04103 Leipzig, Germany
来源
JOURNAL OF MOLECULAR MEDICINE-JMM | 2004年 / 82卷 / 01期
关键词
angiotensin II; platelet-derived growth factor; NAD(P)H oxidase; reactive oxygen species; activator protein-1;
D O I
10.1007/s00109-003-0500-5
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Reactive oxygen species (ROS) are involved in the transcriptional response to angiotensin (ANG) II. In this setting the role of NAD(P)H oxidase, an important source of ROS as second messengers, is not completely understood. In particular in human cells detailed insights into this mechanism are lacking. We investigated the role of ANG II and platelet-derived growth factor (PDGF) AA induced ROS generation derived from p22phox-containing NAD(P)H oxidase in the activation of activator protein (AP) 1 in human vascular smooth muscle cells (SMCs). Both ANG II and PDGF AA induced ROS generation in SMCs which was angiotensin type I receptor and PDGF a receptor dependent. Specific inhibition of the p22phox subunit of the NAD(P)H oxidase using either p22phox neutralizing antibody or p22phox antisense oligodeoxynucleotides (ODNs) attenuated both ANG IT and PDGF AA induced ROS generation. Furthermore, PDGF AA but not ANG II induced p22phox mRNA expression. ANG II and PDGF AA both activated the redox-sensitive transcription factor AP-1, which was inhibited by p22phox antisense ODNs. These findings demonstrate that AP-1 activation in human SMCs in response to ANG II and PDGF AA is mediated via generation of p22phox-dependent ROS. This highlights the crucial role of the p22phox-containing NAD(P)H oxidase in the ANG II and PDGF AA induced signal transduction pathway.
引用
收藏
页码:31 / 38
页数:8
相关论文
共 26 条
[1]   Expression of NADH/NADPH oxidase p22phox in human coronary arteries [J].
Azumi, H ;
Inoue, N ;
Takeshita, S ;
Rikitake, Y ;
Kawashima, S ;
Hayashi, Y ;
Itoh, H ;
Yokoyama, M .
CIRCULATION, 1999, 100 (14) :1494-1498
[2]   Regulation of gene expression by reactive oxygen [J].
Dalton, TD ;
Shertzer, HG ;
Puga, A .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 1999, 39 :67-101
[3]  
De Keulenaer GW, 1998, BIOCHEM J, V329, P653
[4]   Expression of monocyte chemoattractant protein-1 cDNA in vascular smooth muscle cells:: induction of the synthetic phenotype -: A possible clue to SMC differentiation in the process of atherogenesis [J].
Denger, S ;
Jahn, L ;
Wende, P ;
Watson, L ;
Gerber, SH ;
Kübler, W ;
Kreuzer, J .
ATHEROSCLEROSIS, 1999, 144 (01) :15-23
[5]   Free radicals in the physiological control of cell function [J].
Dröge, W .
PHYSIOLOGICAL REVIEWS, 2002, 82 (01) :47-95
[6]   Differential regulation of nitric oxide synthase-II mRNA by growth factors in rat, bovine, and human retinal pigmented epithelial cells [J].
Faure, V ;
Courtois, Y ;
Goureau, O .
OCULAR IMMUNOLOGY AND INFLAMMATION, 1999, 7 (01) :27-34
[7]   p22phox mRNA expression and NADPH oxidase activity are increased in aortas from hypertensive rats [J].
Fukui, T ;
Ishizaka, N ;
Rajagopalan, S ;
Lauren, JB ;
Capers, Q ;
Taylor, WR ;
Harrison, DG ;
deLeon, H ;
Wilcox, JN ;
Griendling, KK .
CIRCULATION RESEARCH, 1997, 80 (01) :45-51
[8]   Oxidative stress and expression of p22phox are involved in the up-regulation of tissue factor in vascular smooth muscle cells in response to activated platelets [J].
Görlach, A ;
Brandes, RP ;
Bassus, S ;
Kronemann, N ;
Kirchmaier, CM ;
Busse, R ;
Schini-Kerth, VB .
FASEB JOURNAL, 2000, 14 (11) :1518-1528
[9]   NAD(P)H oxidase - Role in cardiovascular biology and disease [J].
Griendling, KK ;
Sorescu, D ;
Ushio-Fukai, M .
CIRCULATION RESEARCH, 2000, 86 (05) :494-501
[10]   Mechanism of action and in vivo role of platelet-derived growth factor [J].
Heldin, CH ;
Westermark, B .
PHYSIOLOGICAL REVIEWS, 1999, 79 (04) :1283-1316