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Temporal plasticity of apical progenitors in the developing mouse neocortex

机译:发育中的小鼠新皮层顶端祖细胞的时间可塑性

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摘要

The diverse subtypes of excitatory neurons that populate the neocortex are born from apical progenitors located in the ventricular zone. During corticogenesis, apical progenitors sequentially generate deep-layer neurons followed by superficial-layer neurons directly or via the generation of intermediate progenitors. Whether neurogenic fate progression necessarily implies fate restriction in single progenitor types is unknown. Here we specifically isolated apical progenitors and intermediate progenitors, and fate-mapped their respective neuronal progeny following heterochronic transplantation into younger embryos. We find that apical progenitors are temporally plastic and can re-enter past molecular, electrophysiological and neurogenic states when exposed to an earlier-stage environment by sensing dynamic changes in extracellular Wnt. By contrast, intermediate progenitors are committed progenitors that lack such retrograde fate plasticity. These findings identify a diversity in the temporal plasticity of neocortical progenitors, revealing that some subtypes of cells can be untethered from their normal temporal progression to re-enter past developmental states.
机译:构成新皮层的兴奋性神经元的不同亚型是由位于心室区的根尖祖细胞产生的。在皮质发生过程中,根尖祖细胞顺序生成深层神经元,然后依次生成浅层神经元或通过生成中间祖细胞。尚不清楚神经源性命运的进展是否必然意味着单个祖先类型的命运限制。在这里,我们专门分离了顶端祖细胞和中间祖细胞,并在异时移植到年轻胚胎后将它们各自的神经元后代进行了命运映射。我们发现顶端祖细胞在时间上是可塑性的,当暴露于早期环境中时,通过感知细胞外Wnt的动态变化,它们可以重新进入分子,电生理和神经源性状态。相比之下,中间祖细胞是缺乏这种逆行命运可塑性的坚定祖细胞。这些发现确定了新皮层祖细胞在时间可塑性上的多样性,揭示了某些亚型的细胞可以从其正常的时间进展中解脱出来,重新进入过去的发育状态。

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  • 来源
    《Nature》 |2019年第7774期|370-374|共5页
  • 作者单位

    Univ Geneva Dept Basic Neurosci Geneva Switzerland|Mem Sloan Kettering Canc Ctr Ctr Stem Cell Biol 1275 York Ave New York NY 10021 USA;

    Univ Geneva Dept Basic Neurosci Geneva Switzerland;

    Univ Geneva Dept Basic Neurosci Geneva Switzerland|Swiss Fed Inst Technol Inst Neurosci Schwerzenbach Switzerland;

    Univ Geneva Dept Basic Neurosci Geneva Switzerland|Geneva Univ Hosp Clin Neurol Geneva Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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