首页> 外文期刊>Frontiers in Aging Neuroscience >The Interaction of EphA4 With PDGFRβ Regulates Proliferation and Neuronal Differentiation of Neural Progenitor Cells in vitro and Promotes Neurogenesis in vivo
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The Interaction of EphA4 With PDGFRβ Regulates Proliferation and Neuronal Differentiation of Neural Progenitor Cells in vitro and Promotes Neurogenesis in vivo

机译:EphA4与PDGFRβ的相互作用调节神经祖细胞的增殖和神经元分化<斜体>在体外,促进神经发生<斜斜体>在体内

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Neural progenitor cells (NPCs) have great potentials in cell replacement therapy for neurodegenerative diseases, such as Alzheimer’s disease (AD), by promoting neurogenesis associated with hippocampal memory improvement. Ephrin receptors and angiogenic growth factor receptors have a marked impact on the proliferation and differentiation of NPCs. Although ephrin receptor A4 (EphA4) was shown to directly interact with platelet-derived growth factor receptor β (PDGFRβ), the functional effects of this interaction on neurogenesis in cultured NPCs and adult hippocampus have not yet been studied. Immunoprecipitation demonstrated that EphA4 directly interacted with PDGFRβ in NPCs under ligand stimulation. Ephrin-A1 and PDGF-platelet-derived growth factor BB (BB) significantly increased proliferation and neuronal differentiation of NPCs, which was further augmented by combined treatment of Ephrin-A1 and PDGF-BB. We also found that ligand-dependent proliferation and neuronal differentiation were inhibited by the dominant-negative EphA4 mutant or a PDGFR inhibitor. Most importantly, injection of ephrin-A1 and/or PDGF-BB promoted hippocampal NPC proliferation in the APP/PS1 mouse model of AD, indicating that direct interaction of EphA4 with PDGFRβ plays a functional role on neurogenesis in vivo . Finally, studies in NPCs showed that the EphA4/PDGFRβ/FGFR1/FRS2α complex formed by ligand stimulation is involved in neurogenesis via ERK signaling. The present findings provided a novel insight into the functional role of direct interaction of EphA4 and PDGFRβ in neurogenesis, implicating its potential use for treating neurodegenerative diseases.
机译:神经祖细胞(NPC)通过促进与海马记忆改善相关的神经发生,细胞替代疾病(例如阿尔茨海默病(AD)等细胞置换疾病的潜力很大。 Ephrin受体和血管生成生长因子受体对NPC的增殖和分化具有显着的影响。尽管显示出烧伤剂A4(EphA4)直接与血小板衍生的生长因子受体β(PDGFRβ)相互作用,但尚未研究这种培养的NPC和成人海马在神经发生中的这种相互作用的功能效果。免疫沉淀证明Epha4在配体刺激下与NPC的PDGFRβ直接相互作用。 Ephrin-A1和PDGF-血小板衍生的生长因子BB(BB)显着增加了NPC的增殖和神经元分化,其通过组合治疗Ephrin-A1和PDGF-BB进一步增强。我们还发现,由显性阴性EphA4突变体或PDGFR抑制剂抑制配体依赖性增殖和神经元分化。最重要的是,在AD的APP / PS1小鼠模型中注射Ephrin-A1和/或PDGF-BB的促进海马NPC增殖,表明Epha4与PDGFRβ的直接相互作用对体内神经发生起作用作用作用。最后,NPC的研究表明,通过配体刺激形成的EphA4 /PDGFRβ/ FGFR1 /FRS2α复合物通过ERK信号传导参与神经发生。本研究结果提供了一种新颖的洞察EphA4和PDGFRβ在神经发生中的直接相互作用的功能作用,暗示其用于治疗神经变性疾病的潜在用途。

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