首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Jagged-mediated Notch signaling maintains proliferating neural progenitors and regulates cell diversity in the ventral spinal cord
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Jagged-mediated Notch signaling maintains proliferating neural progenitors and regulates cell diversity in the ventral spinal cord

机译:锯齿状介导的Notch信号传导维持增殖的神经祖细胞并调节腹脊髓中的细胞多样性

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Previous studies have shown that Delta-mediated Notch signaling regulates the number of early differentiating neurons. However, the role of Notch activation and Jagged-mediated signaling during late neurogenesis remains poorly defined. In the developing spinal cord of zebrafish, GABAergic Kolmer-Agduhr (KA″) cells and motor neurons (MN) emerge sequentially from their progenitors in the p3 domain. Jagged2 is expressed uniformly in the pMN domain during late neurogenesis where Olig2 is required for its expression. We suggest that Jagged2 interacts ventrally with progenitors in the adjacent p3 domain, where it has a critical role in the maintenance of proliferating neural progenitors and in preventing differentiation of these progenitors as GABAergic KA″ cells or secondary MN. This study identifies a critical role for Jagged-Notch signaling in the maintenance of proliferating neural precursors in a discrete compartment of the neural tube during the continuing growth and development of the vertebrate nervous system.
机译:先前的研究表明,Delta介导的Notch信号调节着早期分化神经元的数量。但是,Notch激活和锯齿状信号传导在晚期神经发生过程中的作用仍然不清楚。在斑马鱼的脊髓发育中,GABA能性Kolmer-Agduhr(KA'')细胞和运动神经元(MN)从它们的祖细胞依次出现在p3结构域中。在晚期神经发生期间,在其中需要Olig2的表达中,Jagged2在pMN域中均匀表达。我们建议,Jagged2在邻近的p3域中与前体在腹侧相互作用,在该区域中,它在维持增殖的神经祖细胞和防止这些祖细胞分化为GABA能KA''细胞或继发性MN中起关键作用。这项研究确定了锯齿状缺口信号在脊椎动物神经系统持续生长和发展过程中维持神经管离散隔室中增殖性神经前体的关键作用。

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