Transcription factor decoy for activator protein-1 (AP-1) inhibits high glucose- and angiotensin II-induced type 1 plasminogen activator inhibitor (PAI-1) gene expression in cultured human vascular smooth muscle cells

被引:0
|
作者
J. D. Ahn
R. Morishita
Y. Kaneda
K. U. Lee
J. Y. Park
Y. J. Jeon
H. S. Song
I. K. Lee
机构
[1] Institute for Medical Science,
[2] Keimyung University School of Medicine,undefined
[3] Taegu,undefined
[4] Korea,undefined
[5] Division of Gene Therapy Science,undefined
[6] Graduate School of Medicine,undefined
[7] Osaka University,undefined
[8] Suita,undefined
[9] Japan,undefined
[10] Department of Internal Medicine,undefined
[11] University of Ulsan School of Medicine,undefined
[12] Seoul,undefined
[13] Korea,undefined
[14] Department of Internal Medicine,undefined
[15] Keimyung University School of Medicine,undefined
[16] Taegu,undefined
[17] Korea,undefined
来源
Diabetologia | 2001年 / 44卷
关键词
Keywords Decoy ODN; glucose; diabetes; activator protein-1 (AP-1); plasminogen activator inhibitor-1.;
D O I
暂无
中图分类号
学科分类号
摘要
Aims/hypothesis. Multiple factors, including hyperglycaemia and angiotensin II (Ang II), stimulate plasminogen activator inhibitor-1 (PAI-1) gene expression in human vascular smooth muscle cells. This study tested the hypothesis that hyperglycaemia and Ang II stimulate PAI-1 gene expression through activator protein-1 (AP-1) binding sites. Methods. We evaluated the role of AP-1 in PAI-1 gene expression in human vascular smooth muscle cells under high d-glucose and Ang II stimulation using a double-stranded cis-element AP-1 oligodeoxynucleotide (decoy ODN). Results. Activator protein 1 activity was stimulated by high glucose and Ang II treatment and the AP-1 decoy ODN, but not a mismatched decoy ODN, competed for AP-1 activity. The increase in PAI-1 expression by high glucose and Ang II was significantly attenuated by the AP-1 decoy ODN (p < 0.05 or p < 0.01). The increase in PAI-1 expression by high glucose and Ang II action on AP-1 sites was also confirmed by promoter analysis of PAI-1. Activator protein 1 activation in response to either high glucose or co-stimulation with high glucose and Ang II was inhibited completely by calphostin C (a PKC inhibitor) and partially by genistein (a protein tyrosine kinase inhibitor). Conclusion/interpretation. This study shows that high glucose and Ang II stimulate PAI-1 expression through AP-1 binding sites. Signal transduction after AP-1 activation by both high glucose and Ang II largely depends on PKC activation. These data indicate an important role for AP-1 in PAI-1 expression. [Diabetologia (2001) 44: 713–720]
引用
收藏
页码:713 / 720
页数:7
相关论文
共 50 条
  • [1] Transcription factor decoy for activator protein-1 (AP-1) inhibits high glucose- and angiotensin II-induced type 1 plasminogen activator inhibitor (PAI-1) gene expression in cultured human vascular smooth muscle cells
    Ahn, JD
    Morishita, R
    Kaneda, Y
    Lee, KU
    Park, JY
    Jeon, YJ
    Song, HS
    Lee, IK
    DIABETOLOGIA, 2001, 44 (06) : 713 - 720
  • [2] Transcription factor decoy ODN for activator protein-1 (AP-1) inhibits expression of type 1 plasminogen activator inhibitor (PAI-1) gene induced by high glucose and angiotensin II in cultured human vascular smooth muscle cells
    Lee, IK
    Ahn, JD
    Lee, SJ
    Lee, DW
    Kang, HK
    DIABETES, 2001, 50 : A246 - A246
  • [3] Purinergic regulation of plasminogen activator inhibitor-1 (PAI-1) expression in vascular smooth muscle cells
    Feener, EP
    Bouchie, JL
    Chen, HC
    Wilden, PA
    Bagot, C
    CIRCULATION, 1999, 100 (18) : 747 - 747
  • [4] Gemfibrozil specifically inhibits the expression of growth factor-induced plasminogen activator inhibitor type 1 (PAI-1) in arterial smooth muscle cells.
    Nordt, TK
    Bode, C
    AMERICAN JOURNAL OF CARDIOLOGY, 2000, 86 (8A): : 99I - 99I
  • [5] Cilostazol inhibits high glucose- and angiotensin II-induced type 1 plasminogen activator inhibitor expression in artery wall and neointimal region after vascular injury
    Lee, Kyeong-Min
    Lee, Hyo-Jeong
    Kim, Mi-Kyung
    Kim, Hye-Soon
    Jung, Gwon-Soo
    Hur, Seung-Ho
    Kim, Hyoung Tae
    Cho, Won-Hyun
    Kim, Jung-Guk
    Kim, Bo-Wan
    Lim, Jeong Ok
    Choi, Hueng-Sik
    Lee, Ki-Up
    Park, Keun-Gyu
    Lee, In-Kyu
    ATHEROSCLEROSIS, 2009, 207 (02) : 391 - 398
  • [6] Attenuation of neointimal vascular smooth muscle cellularity in atheroma by plasminogen activator inhibitor type 1 (PAI-1)
    Schneider, DJ
    Hayes, M
    Wadsworth, M
    Taatjes, H
    Rincón, M
    Taatjes, DJ
    Sobel, BE
    JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 2004, 52 (08) : 1091 - 1099
  • [7] The augmentation of endothelial cell expression of plasminogen activator inhibitor type 1 (PAI-1) by insulin is mediated by a factor released by vascular smooth muscle cells
    Schneider, DJ
    Ricci, MA
    Absher, PM
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 1997, 29 (02) : 91964 - 91964
  • [8] Cilostazol Inhibits Plasminogen Activator Inhibitor Type 1 Expression in Vascular Smooth Muscle Cells
    Park, Keun-Gyu
    Kim, Nam-Kyung
    Kim, Mi-Kyung
    Kim, Hye-Soon
    Lee, Kyeong-Min
    Min, Ae-Kyung
    Jung, Gwon-Soo
    Jung, Yun-A
    Lee, Jung-Eun
    Jeong, Ji-Yun
    Lee, In-Kyu
    DIABETES, 2009, 58 : A175 - A175
  • [9] Synergic effect of glucose and insulin in stimulating plasminogen activator inhibitor 1 (PAI-1) expression and secretion in human vascular smooth cells (vSMC).
    Pandolfi, A
    DiFebbo, C
    Iacoviello, L
    Porreca, E
    Donati, MB
    Capani, F
    Consoli, A
    DIABETES, 1996, 45 : 984 - 984
  • [10] Leptin increases plasminogen activator inhibitor-1 (PAI-1) production in human vascular smooth muscle cell
    Hosoi, M
    Yamakawa, K
    Koyama, H
    Fukumoto, S
    Inaba, M
    Okuno, Y
    Nishizawa, Y
    Morii, H
    DIABETES, 1998, 47 : A118 - A118