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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >NRP1 acts cell autonomously in endothelium to promote tip cell function during sprouting angiogenesis.
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NRP1 acts cell autonomously in endothelium to promote tip cell function during sprouting angiogenesis.

机译:NRP1在内皮中自主作用于细胞,以在发​​芽血管生成过程中促进尖端细胞功能。

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摘要

Neuropilin (NRP) 1 is a receptor for the vascular endothelial growth factor (VEGF)-A and is essential for normal angiogenesis. Previous in vitro experiments identified NRP1 interactions with VEGF-A's main signaling receptor VEGFR2 within endothelial cells, but also between nonendothelial NRP1 and endothelial VEGFR2. Consistent with an endothelial role for NRP1 in angiogenesis, we found that VEGFR2 and NRP1 were coexpressed in endothelial tip and stalk cells in the developing brain. In addition, NRP1 was expressed on two cell types that interact with growing brain vessels-the neural progenitors that secrete VEGF-A to stimulate tip cell activity and the pro-angiogenic macrophages that promote tip cell anastomosis. Selective targeting of Nrp1 in each of these cell types demonstrated that neural progenitor- and macrophage-derived NRP1 were dispensable, whereas endothelial NRP1 was essential for normal brain vessel growth. NRP1 therefore promotes brain angiogenesis cell autonomously in endothelium, independently of heterotypic interactions with nonendothelial cells. Genetic mosaic analyses demonstrated a key role for NRP1 in endothelial tip rather than stalk cells during vessel sprouting. Thus, NRP1-expressing endothelial cells attained the tip cell position when competing with NRP1-negative endothelial cells in chimeric vessel sprouts. Taken together, these findings demonstrate that NRP1 promotes endothelial tip cell function during angiogenesis.
机译:Neuropilin(NRP)1是血管内皮生长因子(VEGF)-A的受体,对于正常的血管生成必不可少。先前的体外实验确定了内皮细胞内NRP1与VEGF-A的主要信号受体VEGFR2的相互作用,以及非内皮NRP1与内皮VEGFR2之间的相互作用。与血管生成中NRP1的内皮功能一致,我们发现VEGFR2和NRP1在发育中的大脑的内皮尖端和茎细胞中共表达。此外,NRP1在与生长中的脑血管相互作用的两种细胞类型上表达-分泌VEGF-A刺激尖端细胞活性的神经祖细胞和促进尖端细胞吻合的促血管生成巨噬细胞。在这些细胞类型中的每一种中,对Nrp1的选择性靶向证明了神经祖细胞和巨噬细胞衍生的NRP1是可有可无的,而内皮NRP1对于正常的脑血管生长至关重要。因此,NRP1独立于与非内皮细胞的异型相互作用而自主地促进内皮中的脑血管生成细胞。遗传镶嵌分析表明NRP1在血管发芽过程中在内皮尖端而不是茎细胞中起关键作用。因此,当在嵌合血管新芽中与NRP1阴性的内皮细胞竞争时,表达NRP1的内皮细胞达到了尖端细胞的位置。综上所述,这些发现证明NRP1在血管生成过程中促进了内皮尖端细胞功能。

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