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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Semaphorin 3A-vascular endothelial growth factor-165 balance mediates migration and apoptosis of neural progenitor cells by the recruitment of shared receptor.
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Semaphorin 3A-vascular endothelial growth factor-165 balance mediates migration and apoptosis of neural progenitor cells by the recruitment of shared receptor.

机译:Semaphorin 3A-血管内皮生长因子-165平衡通过募集共享受体介导神经祖细胞的迁移和凋亡。

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摘要

The dynamic and coordinated interaction between cells and their microenvironment controls cell migration, proliferation, and apoptosis, mediated by different cell surface molecules. We have studied the response of a neuroectodermal progenitor cell line, Dev, to a guidance molecule, semaphorin 3A (Sema3A), described previously as a repellent-collapsing signal for axons, and we have shown that Sema3A acts as a repellent guidance cue for migrating progenitor cells and, on prolonged application, induces apoptosis. Both repulsion and induction of cell death are mediated by neuropilin-1, the ligand-binding component of the Sema3A receptor. The vascular endothelial growth factor, VEGF165, antagonizes Sema3A-induced apoptosis and promotes cell survival, migration, and proliferation. Surprisingly, repulsion by Sema3A also depends on expression of VEGFR1, a VEGF165 receptor, expressed in Dev cells. Moreover, we found that these repulsive effects of Sema3A require tyrosine kinase activity, which can be attributed to VEGFR1. These results indicate that the balance between guidance molecules and angiogenic factors can modulate the migration, apoptosis (or survival), and proliferation of neural progenitor cells through shared receptors.
机译:细胞与其微环境之间的动态协调相互作用控制着由不同细胞表面分子介导的细胞迁移,增殖和凋亡。我们已经研究了神经外胚层祖细胞系Dev对指导分子semaphorin 3A(Sema3A)的反应,该分子先前被描述为轴突的驱避性折叠信号,并且我们已经证明Sema3A充当了迁移的驱避性引导提示。祖细胞,长时间使用可诱导细胞凋亡。排斥和诱导细胞死亡均由Neuropilin-1(Sema3A受体的配体结合成分)介导。血管内皮生长因子VEGF165拮抗Sema3A诱导的凋亡,并促进细胞存活,迁移和增殖。出乎意料的是,Sema3A的排斥作用还取决于在Dev细胞中表达的VEGFR1(VEGF165受体)的表达。此外,我们发现Sema3A的这些排斥作用需要酪氨酸激酶活性,这可以归因于VEGFR1。这些结果表明,指导分子和血管生成因子之间的平衡可以通过共享受体调节神经祖细胞的迁移,凋亡(或存活)和增殖。

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