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Neuropilin-1 in regulation of VEGF-induced activation of p38MAPK and endothelial cell organization.

机译:Neuropilin-1在调节VEGF诱导的p38MAPK活化和内皮细胞组织中的作用。

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Vascular endothelial growth factor (VEGF)-A regulates vascular development and angiogenesis. VEGF isoforms differ in ability to bind coreceptors heparan sulfate (HS) and neuropilin-1 (NRP1). We used VEGF-A165 (which binds HS and NRP1), VEGF-A121 (binds neither HS nor NRP1), and parapoxvirus VEGF-E-NZ2 (binds NRP1 but not HS) to investigate the role of NRP1 in organization of endothelial cells into vascular structures. All 3 ligands induced similar level of VEGFR-2 tyrosine phosphorylation in the presence of NRP1. In contrast, sprouting angiogenesis in differentiating embryonic stem cells (embryoid bodies), formation of branching pericyte-embedded vessels in subcutaneous matrigel plugs, and sprouting of intersegmental vessels in developing zebrafish were induced by VEGF-A165 and VEGF-E-NZ2 but not by VEGF-A121. Analyses of recombinant factors with NRP1-binding gain- and loss-of-function properties supported the conclusion that NRP1 is critical for VEGF-induced sprouting and branching of endothelial cells. Signal transduction antibody arrays implicated NRP1 in VEGF-induced activation of p38MAPK. Inclusion of the p38MAPK inhibitor SB203580 in VEGF-A165-containing matrigel plugs led to attenuated angiogenesis and poor association with pericytes. Our data strongly indicate that the ability of VEGF ligands to bind NRP1 influences p38MAPK activation, and formation of functional, pericyte-associated vessels.
机译:血管内皮生长因子(VEGF)-A调节血管发育和血管生成。 VEGF同工型结合核心受体硫酸乙酰肝素(HS)和Neuropilin-1(NRP1)的能力不同。我们使用VEGF-A165(与HS和NRP1结合),VEGF-A121(与HS和NRP1都不结合)和副痘病毒VEGF-E-NZ2(与NRP1而不与HS结合)来研究NRP1在内皮细胞组织中的作用血管结构。在NRP1存在下,所有3个配体均诱导了相似水平的VEGFR-2酪氨酸磷酸化。相比之下,VEGF-A165和VEGF-E-NZ2诱导分化的胚胎干细胞(类胚体)中萌发的血管新生,皮下基质胶塞中形成分支的包被周细胞的血管以及斑马鱼在发育中的斑节间血管中的萌发。 VEGF-A121。具有NRP1结合功能丧失和功能特性的重组因子的分析支持以下结论:NRP1对于VEGF诱导的内皮细胞萌发和分支至关重要。信号转导抗体阵列将NRP1与VEGF诱导的p38MAPK激活相关。在含有VEGF-A165的基质胶塞中加入p38MAPK抑制剂SB203580导致血管生成减弱和与周细胞的不良结合。我们的数据强烈表明,VEGF配体结合NRP1的能力影响p38MAPK激活以及功能性,周细胞相关血管的形成。

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