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首页> 外文期刊>Cell Reports >NRP1 Regulates CDC42 Activation to Promote Filopodia Formation in Endothelial Tip Cells
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NRP1 Regulates CDC42 Activation to Promote Filopodia Formation in Endothelial Tip Cells

机译:NRP1调节CDC42激活,以促进内皮尖细胞中的丝状伪足形成。

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Sprouting blood vessels are led by filopodia-studded endothelial tip cells that respond to angiogenic signals. Mosaic lineage tracing previously revealed that NRP1 is essential for tip cell function, although its mechanistic role in tip cells remains poorly defined. Here, we show that NRP1 is dispensable for genetic tip cell identity. Instead, we find that NRP1 is essential to form the filopodial bursts that distinguish tip cells morphologically from neighboring stalk cells, because it enables the extracellular matrix (ECM)-induced activation of CDC42, a key regulator of filopodia formation. Accordingly, NRP1 knockdown and pharmacological CDC42 inhibition similarly impaired filopodia formation in vitro and in developing zebrafish in vivo. During mouse retinal angiogenesis, CDC42 inhibition impaired tip cell and vascular network formation, causing defects that resembled those due to loss of ECM-induced, but not VEGF-induced, NRP1 signaling. We conclude that NRP1 enables ECM-induced filopodia formation for tip cell function during sprouting angiogenesis.
机译:发芽的血管由对血管生成信号有反应的丝状伪足的内皮尖端细胞引导。马赛克谱系追踪以前显示NRP1对于尖端细胞功能是必不可少的,尽管它在尖端细胞中的机械作用仍然不清楚。在这里,我们表明NRP1是遗传尖端细胞身份的可有可无。取而代之的是,我们发现NRP1对于形成从形态上区分尖端细胞与相邻茎细胞的尖端细胞的成虫爆发至关重要,因为它使细胞外基质(ECM)诱导了CDC42的激活,CDC42是丝状伪足形成的关键调节因子。因此,在体外和在体内发育中的斑马鱼中,NRP1抑制和药理性CDC42抑制作用类似地削弱了丝状伪足的形成。在小鼠视网膜血管生成过程中,CDC42抑制作用削弱了尖端细胞和血管网络的形成,导致的缺陷类似于由于ECM诱导而非VEGF诱导的NRP1信号传导缺失所致。我们得出的结论是,NRP1可使ECM诱导的丝状伪足形成,从而在发芽血管生成过程中使尖端细胞发挥功能。

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