• Title of article

    Differential roles of PKCα and PKC in controlling the gene expression of Nox4 in human endothelial cells

  • Author/Authors

    Hui Xu، نويسنده , , Claudia Goettsch، نويسنده , , Ning Xia، نويسنده , , Sven Horke، نويسنده , , Henning Morawietz، نويسنده , , Ulrich F?rstermann، نويسنده , , Huige Li، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    12
  • From page
    1656
  • To page
    1667
  • Abstract
    NADPH oxidases are major sources of superoxide in the vascular wall. This study investigates the role of protein kinase C (PKC) in regulating gene expression of NADPH oxidases. Treatment of human umbilical vein endothelial cells (HUVEC) and HUVEC-derived EA.hy 926 endothelial cells with phorbol 12-myristate 13-acetate (PMA) or phorbol 12,13-dibutyrate led to a PKC-dependent biphasic expression of the gp91phox homolog Nox4. A downregulation of Nox4 was observed at 6 h and an upregulation at 48 h after phorbol ester treatment. The early Nox4 downregulation was associated with a reduced superoxide production, whereas the late Nox4 upregulation was accompanied by a clear enhancement of superoxide. PMA activated the PKC isoforms α and in HUVEC and EA.hy 926 cells. Knockdown of PKC by siRNA prevented the early downregulation of Nox4, whereas knockdown of PKCα selectively abolished the late Nox4 upregulation. Vascular endothelial growth factor (VEGF), which activates PKCα but not PKC in HUVEC, increased Nox4 expression without the initial downregulation. VEGF-induced Nox4 upregulation was associated with an enhanced proliferation and angiogenesis of HUVEC. Both effects could be reduced by inhibition of NADPH oxidase. Thus, a selective inhibition/knockdown of PKCα may represent a novel therapeutic strategy for vascular disease.
  • Keywords
    gene expression , reactive oxygen species , NADPH oxidase , free radicals , endothelium , protein kinase C
  • Journal title
    Free Radical Biology and Medicine
  • Serial Year
    2008
  • Journal title
    Free Radical Biology and Medicine
  • Record number

    521307