首页> 美国卫生研究院文献>The Journal of Neuroscience >EphB2 Tyrosine Kinase-Dependent Forward Signaling in Migration of Neuronal Progenitors That Populate and Form a Distinct Region of the Dentate Niche
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EphB2 Tyrosine Kinase-Dependent Forward Signaling in Migration of Neuronal Progenitors That Populate and Form a Distinct Region of the Dentate Niche

机译:EphB2酪氨酸激酶依赖性正向信号传导的神经元祖细胞的迁移该神经元祖细胞形成并形成了齿状小生境的不同区域。

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摘要

The dentate gyrus (DG) is one of two areas in the mature brain where stem cells reside to continuously produce new neurons throughout adulthood. While much research has focused on the DG for its roles in adult neurogenesis, little is known regarding how this key region of the brain initially develops to form its distinct architecture. We show here that the murine EphB2 receptor tyrosine kinase is critical for embryonic/postnatal development of a specific region of the DG known as the lateral suprapyramidal blade (LSB). Intracellular truncation and point mutants demonstrate that EphB2 catalytic activity is essential for LSB formation. This is consistent with expression of EphB2 in nestin-positive neural progenitor cells that migrate medially from the lateral ventricle dentate notch neuroepithelium to populate the tertiary matrix and form the DG near the midline of the brain. Animals lacking ephrin-B1 recapitulate loss of the receptor and show that this molecule acts as the ligand to stimulate EphB2 forward signaling and direct migration of the neural progenitors into the dorsal compartment of the tertiary matrix and form the LSB. Immunoreactivity against the extracellular matrix protein Reelin in a region directly above the developing LSB is dramatically reduced when EphB2 forward signaling is disrupted. Together, these results indicate ephrin-B1 interacting with EphB2 controls the migration of dentate progenitor cells into the dorsal half of the developing DG, perhaps in part by affecting Reelin expression in a key compartment directly above the LSB.
机译:齿状回(DG)是成熟大脑中干细胞所驻留的两个区域之一,该区域在整个成年期持续产生新的神经元。尽管许多研究都集中在DG在成人神经发生中的作用,但对于大脑的这个关键区域最初如何发展以形成其独特的结构知之甚少。我们在这里显示,鼠EphB2受体酪氨酸激酶对于DG的特定区域(称为侧上蛛网膜叶片(LSB))的胚胎/出生后发育至关重要。细胞内的截断和点突变表明EphB2催化活性是LSB形成所必需的。这与EphB2在巢蛋白阳性神经祖细胞中的表达相一致,后者从侧脑室齿状凹口神经上皮向内侧迁移,从而形成三级基质并在大脑中线附近形成DG。缺乏ephrin-B1的动物概括了受体的丧失,并表明该分子充当配体,刺激EphB2正向信号传导并将神经祖细胞直接迁移到第三基质的背侧隔室并形成LSB。当EphB2正向信号传导受到破坏时,在发育中的LSB正上方的区域中,针对细胞外基质蛋白Reelin的免疫反应性会大大降低。总之,这些结果表明,ephrin-B1与EphB2相互作用控制了齿状祖细胞向发育中的DG背侧的迁移,这可能部分是由于影响了LSB正上方的关键区室中Reelin的表达。

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