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激活的Fps/Fes部分挽救了Flk1缺陷型血管祖细胞的体内发育潜能。

Activated Fps/Fes partially rescues the in vivo developmental potential of Flk1-deficient vascular progenitor cells.

作者信息

Haigh Jody J, Ema Masatsugu, Haigh Katharina, Gertsenstein Marina, Greer Peter, Rossant Janet, Nagy Andras, Wagner Erwin F

机构信息

Mount Sinai Hospital, Samuel Lunenfeld Research Institute, 600 University Ave, Toronto, Ontario, Canada M5G 1X5.

出版信息

Blood. 2004 Feb 1;103(3):912-20. doi: 10.1182/blood-2003-07-2343. Epub 2003 Oct 2.

Abstract

Relatively little is known about the modulators of the vascular endothelial growth factor A (VEGF-A)/Flk1 signaling cascade. To functionally characterize this pathway, VEGF-A stimulation of endothelial cells was performed. VEGF-A-mediated Flk1 activation resulted in increased translocation of the endogenous Fps/Fes cytoplasmic tyrosine kinase to the plasma membrane and increased tyrosine phosphorylation, suggesting a role for Fps/Fes in VEGF-A/Flk1 signaling events. Addition of a myristoylation consensus sequence to Fps/Fes resulted in VEGF-A-independent membrane localization of Fps/Fes in endothelial cells. Expression of the activated Fps/Fes protein in Flk1-deficient embryonic stem (ES) cells rescued their contribution to the developing vascular endothelium in vivo by using ES cell-derived chimeras. Activated Fps/Fes contributed to this rescue event by restoring the migratory potential to Flk1 null progenitors, which is required for movement of hemangioblasts from the primitive streak region into the yolk sac proper. Activated Fps/Fes in the presence of Flk1 increased the number of hemangioblast colonies in vitro and increased the number of mesodermal progenitors in vivo. These results suggest that Fps/Fes may act synergistically with Flk1 to modulate hemangioblast differentiation into the endothelium. We have also demonstrated that activated Fps/Fes causes hemangioma formation in vivo, independently of Flk1, as a result of increasing vascular progenitor density.

摘要

关于血管内皮生长因子A(VEGF-A)/Flk1信号级联的调节因子,人们了解相对较少。为了从功能上表征该信号通路,我们对内皮细胞进行了VEGF-A刺激实验。VEGF-A介导的Flk1激活导致内源性Fps/Fes细胞质酪氨酸激酶向质膜的转位增加以及酪氨酸磷酸化增加,这表明Fps/Fes在VEGF-A/Flk1信号事件中发挥作用。在Fps/Fes上添加豆蔻酰化共有序列导致其在内皮细胞中出现不依赖VEGF-A的膜定位。通过使用胚胎干细胞(ES)来源的嵌合体,在Flk1缺陷的胚胎干细胞中表达活化的Fps/Fes蛋白挽救了它们对体内发育中的血管内皮的贡献。活化的Fps/Fes通过恢复Flk1缺失祖细胞的迁移潜能促成了这一挽救事件,而这是成血管细胞从原始条带区域迁移到卵黄囊所必需的。在存在Flk1的情况下,活化的Fps/Fes增加了体外成血管细胞集落的数量,并增加了体内中胚层祖细胞的数量。这些结果表明,Fps/Fes可能与Flk1协同作用,调节成血管细胞向内皮细胞的分化。我们还证明,活化的Fps/Fes由于增加了血管祖细胞密度,在体内导致血管瘤形成,且不依赖于Flk1。

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