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首页> 外文期刊>Development >Ascl1 defines sequentially generated lineage-restricted neuronal and oligodendrocyte precursor cells in the spinal cord.
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Ascl1 defines sequentially generated lineage-restricted neuronal and oligodendrocyte precursor cells in the spinal cord.

机译:Ascl1在脊髓中定义了顺序生成的谱系受限的神经元和少突胶质前体细胞。

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The neural basic helix-loop-helix transcription factor Ascl1 (previously Mash1) is present in ventricular zone cells in restricted domains throughout the developing nervous system. This study uses genetic fate mapping to define the stage and neural lineages in the developing spinal cord that are derived from Ascl1-expressing cells. We find that Ascl1 is present in progenitors to both neurons and oligodendrocytes, but not astrocytes. Temporal control of the fate-mapping paradigm reveals rapid cell-cycle exit and differentiation of Ascl1-expressing cells. At embryonic day 11, Ascl1 identifies neuronal-restricted precursor cells that become dorsal horn neurons in the superficial laminae. By contrast, at embryonic day 16, Ascl1 identifies oligodendrocyte-restricted precursor cells that distribute throughout the spinal cord. These data demonstrate that sequentially generated Ascl1-expressing progenitors give rise first to dorsal horn interneurons and subsequently to late-born oligodendrocytes. Furthermore, Ascl1-null cells in the spinal cord have a diminished capacity to undergo neuronal differentiation, with a subset of these cells retaining characteristics of immature glial cells.
机译:神经基础螺旋-环-螺旋转录因子Ascl1(以前称为Mash1)存在于整个发育中的神经系统中受限区域的心室区细胞中。这项研究使用遗传命运图谱来确定发育中的脊髓的阶段和神经谱系,这些脊髓和神经谱系源自表达Ascl1的细胞。我们发现Ascl1存在于神经元和少突胶质细胞,而不是星形胶质细胞的祖细胞中。命运映射范式的时间控制揭示了快速的细胞周期退出和表达Ascl1的细胞的分化。在胚胎的第11天,Ascl1识别出神经元受限的前体细胞,这些前体细胞成为浅层中的背角神经元。相反,在胚胎第16天,Ascl1识别少突胶质细胞限制的前体细胞,这些前体细胞分布在整个脊髓中。这些数据表明,顺序产生的表达Ascl1的祖细胞首先产生于背角中间神经元,随后产生晚出生的少突胶质细胞。此外,脊髓中的Asc1-null细胞的神经元分化能力减弱,其中一部分细胞保留了未成熟神经胶质细胞的特征。

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