首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Formation of a PKCζ/β-catenin complex in endothelial cells promotes angiopoietin-1-induced collective directional migration and Angiogenic sprouting
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Formation of a PKCζ/β-catenin complex in endothelial cells promotes angiopoietin-1-induced collective directional migration and Angiogenic sprouting

机译:内皮细胞中PKCζ/β-catenin复合物的形成促进血管生成素1诱导的集体定向迁移和血管新生

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摘要

Angiogenic sprouting requires that cellcell contacts be maintained during migration of endothelial cells. Angiopoietin-1 (Ang-1) and vascular endothelial growth factor act oppositely on endothelial cell junctions. We found that Ang-1 promotes collective and directional migration and, in contrast to VEGF, induces the formation of a complex formed of atypical protein kinase C (PKC)-ζ and β-catenin at cell-cell junctions and at the leading edge of migrating endothelial cells. This complex brings Par3, Par6, and adherens junction proteins at the front of migrating cells to locally activate Rac1 in response to Ang-1. The colocalization of PKCζ and β-catenin at leading edge along with PKCζ-dependent stabilization of cell-cell contacts promotes directed and collective endothelial cell migration. Consistent with these results, down-regulation of PKCζ in endothelial cells alters Ang-1-induced sprouting in vitro and knockdown in developing zebrafish results in intersegmental vessel defects caused by a perturbed directionality of tip cells and by loss of cell contacts between tip and stalk cells. These results reveal that PKCζ and β-catenin function in a complex at adherens junctions and at the leading edge of migrating endothelial cells to modulate collective and directional migration during angiogenesis.
机译:血管新生需要在内皮细胞迁移过程中保持细胞间的接触。血管生成素-1(Ang-1)和血管内皮生长因子在内皮细胞连接处相反地起作用。我们发现Ang-1促进集体和方向性迁移,并且与VEGF相比,诱导了非典型蛋白激酶C(PKC)-ζ和β-catenin在细胞-细胞连接处和前缘形成的复合物的形成。迁移的内皮细胞。这种复合物带来了Par3,Par6,并在迁移细胞的前面粘附了连接蛋白,以响应Ang-1局部激活Rac1。 PKCζ和β-catenin在前沿的共定位以及PKCζ依赖性的细胞间接触稳定作用促进了定向和集体内皮细胞迁移。与这些结果一致,内皮细胞中PKCζ的下调改变了Ang-1诱导的体外发芽,而发育中的斑马鱼的敲低导致尖端细胞方向性紊乱以及尖端与茎之间的细胞接触丧失,导致节段间血管缺损。细胞。这些结果表明,PKCζ和β-连环蛋白在粘附的连接处和迁移的内皮细胞的前缘的复合物中起作用,以调节血管生成过程中的集体和定向迁移。

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