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首页> 外文期刊>The journal of clinical investigation >ERK1/2-Akt1 crosstalk regulates arteriogenesis in mice and zebrafish
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ERK1/2-Akt1 crosstalk regulates arteriogenesis in mice and zebrafish

机译:ERK1 / 2-Akt1串扰调节小鼠和斑马鱼的动脉生成

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Arterial morphogenesis is an important and poorly understood process. In particular, the signaling events controlling arterial formation have not been established. We evaluated whether alterations in the balance between ERK1/2 and PI3K signaling pathways could stimulate arterial formation in the setting of defective arterial morphogenesis in mice and zebrafish. Increased ERK1/2 activity in mouse ECs with reduced VEGF responsiveness was achieved in vitro and in vivo by downregulating PI3K activity, suppressing Akt1 but not Akt2 expression, or introducing a constitutively active ERK1/2 construct. Such restoration of ERK1/2 activation was sufficient to restore impaired arterial development and branching morphogenesis in synectin-deficient mice and synectin-knockdown zebrafish. The same approach effectively stimulated arterial growth in adult mice, restoring arteriogenesis in mice lacking synectin and in atherosclerotic mice lacking both LDL-R and ApoB48. We therefore conclude that PI3K-ERK1/2 crosstalk plays a key role in the regulation of arterial growth and that the augmentation of ERK signaling via suppression of the PI3K signaling pathway can effectively stimulate arteriogenesis.
机译:动脉形态发生是一个重要的且鲜为人知的过程。特别地,尚未建立控制动脉形成的信号传递事件。我们评估了ERK1 / 2和PI3K信号通路之间平衡的改变是否可以在小鼠和斑马鱼的动脉形态发生缺陷的情况下刺激动脉形成。通过下调PI3K活性,抑制Akt1但不抑制Akt2表达或引入组成型活性ERK1 / 2构建体,在体外和体内实现了具有降低的VEGF反应性的小鼠EC中ERK1 / 2活性的提高。这种ERK1 / 2激活的恢复足以恢复缺损synectin的小鼠和synectin-nockdown斑马鱼的动脉发育和分支形态发生。相同的方法有效地刺激了成年小鼠的动脉生长,恢复了缺乏synectin的小鼠和缺乏LDL-R和ApoB48的动脉粥样硬化小鼠的动脉生成。因此,我们得出结论,PI3K-ERK1 / 2串扰在调节动脉生长中起关键作用,并且通过抑制PI3K信号传导途径增强ERK信号传导可有效刺激动脉生成。

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