首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Neural Transmembrane Protease and Endothelial Gs Protein Activation in Cell Contact-dependent Signaling between Neural Stem/Progenitor Cells and Brain Endothelial Cells
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Neural Transmembrane Protease and Endothelial Gs Protein Activation in Cell Contact-dependent Signaling between Neural Stem/Progenitor Cells and Brain Endothelial Cells

机译:神经干/祖细胞和脑内皮细胞之间的细胞接触依赖性信号传导中的神经跨膜蛋白酶和内皮Gs蛋白激活。

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摘要

Vasculature is an important component of the neural stem cell niche in brain. It regulates neural stem/progenitor (NS/P) cell self-renewal, differentiation, and migration. In the neurogenic niches of adult brain, NS/P cells lie close to blood vessels, and proliferating NS/P cells frequently contact the vasculature. In the present study we showed that NS/P cells in co-culture with brain endothelial (bEND) cells activated endothelial G proteins and p38 mitogen-activated protein kinase (p38 MAPK) and stimulated cytokine/chemokine expression. These NS/P cell-induced endothelial responses took place during NS/P cell and bEND cell direct contact and were critically dependent on the expression of the type II transmembrane serine protease matriptase (MTP) by NS/P cells, because knocking down of MTP in NS/P cells impaired and re-expression of MTP restored their ability to induce endothelial cytokine/chemokine expression, p38 MAPK, or G protein activation. Cholera toxin blocked NS/P cell-induced endothelial responses, suggesting that the endothelial G protein activated by NS/P MTP is in the Gs subfamily. The addition of p38 MAPK inhibitor impaired NS/P cell-induced endothelial cytokine/chemokine expression. The known G protein-coupled receptor substrate of MTP, protease-activated receptor 2, was not involved in this system. These results revealed a novel signaling pathway in neural stem cell vascular niches that is mediated by neural MTP and endothelial Gs protein signaling at the cell-cell interface. This is the first report of direct cell-cell signaling between NS/P and bEND cells.
机译:脉管系统是大脑神经干细胞生态位的重要组成部分。它调节神经干/祖细胞(NS / P)的细胞自我更新,分化和迁移。在成年大脑的神经源性壁ni中,NS / P细胞靠近血管,并且增殖的NS / P细胞经常与脉管系统接触。在本研究中,我们显示与脑内皮(bEND)细胞共培养的NS / P细胞激活了内皮G蛋白和p38丝裂原激活的蛋白激酶(p38 MAPK),并刺激了细胞因子/趋化因子的表达。这些NS / P细胞诱导的内皮反应发生在NS / P细胞和bEND细胞直接接触的过程中,并严重依赖于NS / P细胞表达的II型跨膜丝氨酸蛋白酶Matriptase(MTP),因为MTP的敲低在NS / P细胞中,MTP的受损和MTP的重新表达恢复了它们诱导内皮细胞因子/趋化因子表达,p38 MAPK或G蛋白活化的能力。霍乱毒素阻断了NS / P细胞诱导的内皮反应,表明被NS / P MTP激活的内皮G蛋白在Gs亚家族中。 p38 MAPK抑制剂的加入会损害NS / P细胞诱导的内皮细胞因子/趋化因子的表达。 MTP的已知G蛋白偶联受体底物,蛋白酶激活受体2,不参与此系统。这些结果揭示了神经干细胞血管壁中的新型信号通路,该通路由神经-MTP和细胞-细胞界面处的内皮Gs蛋白信号传导介导。这是NS / P和bEND细胞之间直接细胞信号转导的首次报道。

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