首页> 美国卫生研究院文献>The Journal of Neuroscience >A Novel Embryonic Nestin-Expressing Radial Glia-Like Progenitor Gives Rise to Zonally Restricted Olfactory and Vomeronasal Neurons
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A Novel Embryonic Nestin-Expressing Radial Glia-Like Progenitor Gives Rise to Zonally Restricted Olfactory and Vomeronasal Neurons

机译:新型胚胎巢蛋白表达Rad神经胶质样祖细胞增加了带状限制嗅觉和犁鼻神经元。

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摘要

Persistent neurogenesis is maintained throughout development and adulthood in the mouse olfactory epithelium (OE). Despite this, the identity and origin of different embryonic OE progenitors, their spatiotemporal induction and contribution to patterning during development, has yet to be delineated. Here, we show that the embryonic OE contains a novel nestin-expressing radial glia-like progenitor (RGLP) that is not found in adult OE, which is antigenically distinct from embryonic CNS radial glia. Nestin-cre-mediated lineage tracing with three different reporters reveals that only a subpopulation of nestin-expressing RGLPs activate “CNS-specific” nestin regulatory elements, and produce spatially restricted olfactory receptor neurons (ORNs) in zone 1 of the OE, and vomeronasal receptor neurons restricted to the VR1 zone. This dorsal-medial restriction of transgene-activating cells is also seen in the embryonic OE of Nestin-GFP transgenic mice, in which green fluorescent protein (GFP) is found in a subpopulation of GFP+Mash1+ neuronal progenitors, despite the fact that endogenous Nestin expression is found in RGLPs throughout the OE. Embryonic OE progenitors produce three biologically distinct colony subtypes in vitro, a subpopulation of which include nestin-expressing RGLPs during in vitro colony formation. When generated from Nestin-cre/ZEG mice, neurogenic colonies also produce GFP+Mash1+ progenitors and ORNs. We thus identify a novel neurogenic precursor, the RGLP of the OE and vomeronasal organ (VNO), and provide the first evidence for intrinsic differences in the origin and spatiotemporal potential of distinct progenitors during development of the OE and VNO.
机译:在小鼠嗅觉上皮(OE)的整个发育和成年期都保持持久的神经发生。尽管如此,尚未描述不同胚胎OE祖细胞的身份和起源,它们的时空诱导以及对发育过程中的模式形成的贡献。在这里,我们显示胚胎OE包含一种在成年OE中未发现的表达巢蛋白的放射状神经胶质样祖细胞(RGLP),这在抗原性上不同于胚胎CNS放射神经胶质。 Nestin-cre介导的谱系追踪与三个不同的记者发现,只有一小部分表达Nestin的RGLP激活“ CNS特异性” Nestin调控元件,并在OE的1区和犁鼻中产生空间受限的嗅觉受体神经元(ORN)。受体神经元仅限于VR1区。在Nestin-GFP转基因小鼠的胚胎OE中也可以看到这种转基因激活细胞的背-内侧限制,尽管事实证明内源Nestin可以在GFP + Mash1 +神经元祖细胞的亚群中找到绿色荧光蛋白(GFP)。在整个OE中的RGLP中发现表达。胚胎OE祖细胞在体外产生三种生物学上不同的菌落亚型,其中的一个亚群包括在体外菌落形成过程中表达巢蛋白的RGLP。当从Nestin-cre / ZEG小鼠中产生时,神经源性菌落也会产生GFP + Mash1 +祖细胞和ORN。因此,我们确定了一种新型的神经源性前体,即OE和犁鼻器官(VNO)的RGLP,并为OE和VNO发育过程中不同祖细胞的起源和时空潜力的内在差异提供了第一个证据。

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