首页> 美国卫生研究院文献>The Journal of Neuroscience >Heterogeneity in Ventricular Zone Neural Precursors Contributes to Neuronal Fate Diversity in the Postnatal Neocortex
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Heterogeneity in Ventricular Zone Neural Precursors Contributes to Neuronal Fate Diversity in the Postnatal Neocortex

机译:心室区神经前体中的异质性有助于产后新皮层的神经元命运多样性。

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摘要

The recent discovery of short neural precursors (SNPs) in the murine neocortical ventricular zone (VZ) challenges the widely held view that radial glial cells (RGCs) are the sole occupants of this germinal compartment and suggests that precursor variety is an important factor of brain development. Here, we use in utero electroporation and genetic fate mapping to show that SNPs and RGCs cohabit the VZ but display different cell cycle kinetics and generate phenotypically different progeny. In addition, we find that RGC progeny undergo additional rounds of cell division as intermediate progenitor cells (IPCs), whereas SNP progeny generally produce postmitotic neurons directly from the VZ. By clearly defining SNPs as bona fide VZ residents, separate from both RGCs and IPCs, and uncovering their unique proliferative and lineage properties, these results demonstrate how individual neural precursor groups in the embryonic rodent VZ create diversity in the overlying neocortex.
机译:最近在鼠新皮层心室区(VZ)中发现短神经前体(SNP)的观点挑战了人们普遍认为的径向胶质细胞(RGC)是该生发区室的唯一占有者的观点,并表明前体多样性是大脑的重要因素发展。在这里,我们在子宫内电穿孔和遗传命运图谱中使用显示SNP和RGC同居VZ,但显示不同的细胞周期动力学并产生表型不同的后代。此外,我们发现RGC后代作为中间祖细胞(IPCs)经历了另一轮细胞分裂,而SNP后代通常直接从VZ产生有丝分裂后神经元。通过将SNP明确定义为真正的VZ居民,与RGC和IPC分离,并揭示了其独特的增殖和谱系特性,这些结果证明了胚胎啮齿动物VZ中的单个神经前体基团如何在上皮新皮层中创造多样性。

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