首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Both Kdr and Flt1 play a vital role in hypoxia-induced Src-PLD1-PKCγ-cPLA2 activation and retinal neovascularization.
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Both Kdr and Flt1 play a vital role in hypoxia-induced Src-PLD1-PKCγ-cPLA2 activation and retinal neovascularization.

机译:Kdr和Flt1在缺氧诱导的Src-PLD1-PKCγ-cPLA2激活和视网膜新血管形成中都起着至关重要的作用。

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摘要

To understand the mechanisms of Src-PLD1-PKCγ-cPLA activation by vascular endothelial growth factor A (VEGFA), we studied the role of Kdr and Flt1. VEGFA, while having no effect on Flt1 phosphorylation, induced Kdr phosphorylation in human retinal microvascular endothelial cells (HRMVECs). Depletion of Kdr attenuated VEGFA-induced Src-PLD1-PKCγ-cPLA activation. Regardless of its phosphorylation state, downregulation of Flt1 also inhibited VEGFA-induced Src-PLD1-PKCγ-cPLA activation, but only modestly. In line with these findings, depletion of either Kdr or Flt1 suppressed VEGFA-induced DNA synthesis, migration, and tube formation, albeit more robustly with Kdr downregulation. Hypoxia induced tyrosine phosphorylation of Kdr and Flt1 in mouse retina, and depletion of Kdr or Flt1 blocked hypoxia-induced Src-PLD1-PKCγ-cPLA activation and retinal neovascularization. VEGFB induced Flt1 tyrosine phosphorylation and Src-PLD1-PKCγ-cPLA activation in HRMVECs. Hypoxia induced VEGFA and VEGFB expression in retina, and inhibition of their expression blocked hypoxia-induced Kdr and Flt1 activation, respectively. Furthermore, depletion of VEGFA or VEGFB attenuated hypoxia-induced Src-PLD1-PKCγ-cPLA activation and retinal neovascularization. These findings suggest that although VEGFA, through Kdr and Flt1, appears to be the major modulator of Src-PLD1-PKCγ-cPLA signaling in HRMVECs, facilitating their angiogenic events in vitro, both VEGFA and VEGFB mediate hypoxia-induced Src-PLD1-PKCγ-cPLA activation and retinal neovascularization via activation of Kdr and Flt1, respectively.
机译:为了了解血管内皮生长因子A(VEGFA)激活Src-PLD1-PKCγ-cPLA的机制,我们研究了Kdr和Flt1的作用。 VEGFA虽然对Flt1磷酸化没有影响,但在人视网膜微血管内皮细胞(HRMVEC)中诱导Kdr磷酸化。 Kdr的耗竭减弱了VEGFA诱导的Src-PLD1-PKCγ-cPLA激活。不管其磷酸化状态如何,Flt1的下调也都抑制了VEGFA诱导的Src-PLD1-PKCγ-cPLA的活化,但作用很小。符合这些发现,尽管Kdr下调更有效,但Kdr或Flt1的消耗会抑制VEGFA诱导的DNA合成,迁移和管形成。低氧诱导小鼠视网膜中Kdr和Flt1的酪氨酸磷酸化,而Kdr或Flt1的耗竭阻止了低氧诱导的Src-PLD1-PKCγ-cPLA活化和视网膜新血管形成。 VEGFB诱导HRMVEC中Flt1酪氨酸磷酸化和Src-PLD1-PKCγ-cPLA活化。低氧诱导视网膜中VEGFA和VEGFB的表达,抑制它们的表达分别阻断了低氧诱导的Kdr和Flt1的激活。此外,VEGFA或VEGFB的耗竭减弱了缺氧诱导的Src-PLD1-PKCγ-cPLA激活和视网膜新血管形成。这些发现表明,尽管VEGFA通过Kdr和Flt1似乎是HRMVEC中Src-PLD1-PKCγ-cPLA信号的主要调节剂,促进了它们在体外的血管生成事件,但VEGFA和VEGFB均介导了低氧诱导的Src-PLD1-PKCγ -cPLA激活和分别通过Kdr和Flt1激活的视网膜新血管形成。

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