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首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >A key role for the integrin alpha2beta1 in experimental and developmental angiogenesis.
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A key role for the integrin alpha2beta1 in experimental and developmental angiogenesis.

机译:整合素α2β1在实验和发育血管生成中的关键作用。

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The alpha2beta1 integrin receptor plays a key role in angiogenesis. Here we investigated the effects of small molecule inhibitors (SMIs) designed to disrupt integrin alpha2 I or beta1 I-like domain function on angiogenesis. In unchallenged endothelial cells, fibrillar collagen induced robust capillary morphogenesis. In contrast, tube formation was significantly reduced by SMI496, a beta1 I-like domain inhibitor and by function-blocking anti-alpha2beta1 but not -alpha1beta1 antibodies. Endothelial cells bound fluorescein-labeled collagen I fibrils, an interaction specifically inhibited by SMI496. Moreover, SMI496 caused cell retraction and cytoskeletal collapse of endothelial cells as well as delayed endothelial cell wound healing. SMI activities were examined in vivo by supplementing the growth medium of zebrafish embryos expressing green fluorescent protein under the control of the vascular endothelial growth factor receptor-2 promoter. SMI496, but not a control compound, interfered with angiogenesis in vivo by reversibly inhibiting sprouting from the axial vessels. We further characterized zebrafish alpha2 integrin and discovered that this integrin is highly conserved, especially the I domain. Notably, a similar vascular phenotype was induced by morpholino-mediated knockdown of the integrin alpha2 subunit. By live videomicroscopy, we confirmed that the vessels were largely nonfunctional in the absence of alpha2beta1 integrin. Collectively, our results provide strong biochemical and genetic evidence of a central role for alpha2beta1 integrin in experimental and developmental angiogenesis.
机译:α2β1整合素受体在血管生成中起关键作用。在这里,我们研究了旨在破坏整合素 α2 I 或 β1 I 样结构域功能的小分子抑制剂 (SMI) 对血管生成的影响。在未被激发的内皮细胞中,原纤维胶原诱导了强大的毛细血管形态发生。相比之下,SMI496(一种 β1 I 样结构域抑制剂)和功能阻断抗 α2beta1 但不阻断 -α1beta1 抗体可显著减少管的形成。内皮细胞结合荧光素标记的 I 型胶原纤维,这是一种被 SMI496 特异性抑制的相互作用。此外,SMI496 引起内皮细胞的细胞回缩和细胞骨架塌陷以及内皮细胞伤口愈合延迟。在血管内皮生长因子受体-2启动子的控制下,通过补充表达绿色荧光蛋白的斑马鱼胚胎的生长培养基,在体内检测SMI活性。SMI496,但不是对照化合物,通过可逆地抑制轴向血管的萌发来干扰体内血管生成。我们进一步表征了斑马鱼α2整合素,发现这种整合素是高度保守的,尤其是I结构域。值得注意的是,吗啉介导的整合素α2亚基敲低诱导了类似的血管表型。通过实时视频显微镜检查,我们证实在没有α2β1整合素的情况下,血管基本上是无功能的。总的来说,我们的研究结果提供了强有力的生化和遗传证据,证明α2β1整合素在实验和发育血管生成中的核心作用。

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