AP-1-dependent transcriptional regulation of NADPH oxidase in human aortic smooth muscle cells role of p22phox subunit

被引:87
|
作者
Manea, Adrian [1 ]
Manea, Simona A. [1 ]
Gafencu, Anca V. [1 ]
Raicu, Monica [1 ]
Simionescu, Maya [1 ]
机构
[1] Inst Cellular Biol & Pathol Nicolae Simionescu, Bucharest, Romania
关键词
NADPH oxidase; AP-1; hypertension; atherosclerosis;
D O I
10.1161/ATVBAHA.108.163592
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective-NADPH oxidase (NADPHox) is the major source of reactive oxygen species in vascular diseases; the mechanisms of enzyme activation are not completely elucidated. AP-1 controls the expression of many genes linked to vascular smooth muscle cells (SMCs) dysfunction. In this study we searched for the role of AP-1 in the regulation of NADPHox expression and function in human aortic SMCs exposed to proinflammatory conditions. Methods and Results-Cultured SMCs were exposed to either angiotensin II (Ang II) or tumor necrosis factor (TNF)-alpha. The lucigenin-enhanced chemiluminescence assay and real-time polymerase chain reaction analysis revealed that AP-1 and mitogen-activated protein kinase inhibitors reduced both Ang II or TNF-alpha-dependent upregulation of NADPHox activity and mRNA expression (NOX1, NOX4, p67(phox), p47(phox), p22(phox)). Inhibitors of AP-1 significantly diminished the Ang II or TNF-alpha-stimulated p22(phox) promoter activity and protein level. Transient overexpression of c-Jun/c-Fos upregulated p22(phox) promoter activity. Transcription factor pull-down assay and chromatin immunoprecipitation demonstrated the physical interaction of c-Jun protein with predicted AP-1-binding sites in the p22(phox) gene promoter. Conclusions-In SMCs exposed to Ang II or TNF-alpha, inhibition of AP-1-related pathways reduces NADPHox expression and the O-2-production. The physical interaction of AP-1 with p22(phox) gene promoter facilitates NADPHox regulation.
引用
收藏
页码:878 / 885
页数:8
相关论文
共 50 条
  • [31] Impact of the p22phox dependent NADPH-oxidase on hypoxia-induced pulmonary vasoconstriction and hypertension
    Chandran, N.
    Tabeling, C.
    Marsh, L.
    Balint, Z.
    Witzenrath, M.
    Olschewski, H.
    Olschewski, A.
    WIENER KLINISCHE WOCHENSCHRIFT, 2013, 125 (19-20) : 648 - 649
  • [32] Role of p47phox phosphorylation and binding to p22phox in angiotensin II-induced activation of endothelial NADPH oxidase
    Li, JM
    Shah, AM
    CIRCULATION, 2002, 106 (19) : 260 - 261
  • [33] Angiotensin II induces the NADPH oxidase subunit p22phox in endothelial cells: Effect on platelet derived growth factor dependent production of reactive oxygen species
    Kreuzer, J
    Durst, D
    Werle, M
    Jahn, L
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2000, 35 (02) : 294A - 294A
  • [34] ROCK2 interacts with p22phox to phosphorylate p47phox and to control NADPH oxidase activation in human monocytes
    Tlili, Asma
    Pintard, Coralie
    Hurtado-Nedelec, Margarita
    Liu, Dan
    Marzaioli, Viviana
    Thieblemont, Nathalie
    Dang, Pham My-Chan
    El-Benna, Jamel
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2023, 120 (03)
  • [35] THE EXPRESSION OF NADPH OXIDASE COMPONENTS IN HUMAN GLOMERULAR MESANGIAL CELLS - DETECTION OF PROTEIN AND MESSENGER-RNA FOR P47PHOX, P67PHOX, AND P22PHOX
    JONES, SA
    HANCOCK, JT
    JONES, OTG
    NEUBAUER, A
    TOPLEY, N
    JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 1995, 5 (07): : 1483 - 1491
  • [36] ATF4 regulated NADPH oxidase subunit p22phox is important for the vascular endoplasmic reticulum stress response
    Petry, A.
    Zhang, Z.
    Weitnauer, M.
    Trautz, B.
    Goerlach, A.
    ACTA PHYSIOLOGICA, 2017, 219 : 54 - 54
  • [37] HGF/c-Met regulates p22phox subunit of the NADPH oxidase complex in primary mouse hepatocytes by transcriptional and post-translational mechanisms
    Simoni-Nieves, Arturo
    Clavijo-Cornejo, Denise
    Salas-Silva, Soraya
    Escobedo-Calvario, Alejandro
    Bucio, Leticia
    Souza, Veronica
    Gutierrez-Ruiz, Maria Concepcion
    Miranda-Labra, Roxana U.
    Gomez-Quiroz, Luis E.
    ANNALS OF HEPATOLOGY, 2021, 25
  • [38] Localization of superoxide production and expression of the NAD(P)H oxidase subunit p22phox in human coronary artery
    Sorescu, D
    Daiana, W
    Vega, JD
    Griendling, KK
    Taylor, WR
    CIRCULATION, 2000, 102 (18) : 301 - 301
  • [39] Letter regarding article by Becker et al, "Hyperhomocysteinemia, a cardiac metabolic disease:: Role of nitric oxide and the p22phox subunit of NADPH oxidase"
    Antoniades, C
    Tousoulis, D
    Stefanadis, C
    CIRCULATION, 2005, 112 (15) : E266 - E266
  • [40] gp91phox Contributes to NADPH oxidase activity in aortic fibroblasts but not smooth muscle cells
    Chamseddine, AH
    Miller, FJ
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2003, 285 (06): : H2284 - H2289