首页> 美国卫生研究院文献>Development (Cambridge England) >The homeobox gene Gsx2 controls the timing of oligodendroglial fate specification in mouse lateral ganglionic eminence progenitors
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The homeobox gene Gsx2 controls the timing of oligodendroglial fate specification in mouse lateral ganglionic eminence progenitors

机译:同源盒基因Gsx2控制小鼠侧神经节隆突祖细胞中少突神经胶质命运的时机

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摘要

The homeobox gene Gsx2 has previously been shown to be required for the specification of distinct neuronal subtypes derived from lateral ganglionic eminence (LGE) progenitors at specific embryonic time points. However, its role in the subsequent generation of oligodendrocytes from these progenitors remains unclear. We have utilized conditional gain-of-function and loss-of-function approaches in order to elucidate the role of Gsx2 in the switch between neurogenesis and oligodendrogenesis within the embryonic ventral telencephalon. In the absence of Gsx2 expression, an increase in oligodendrocyte precursor cells (OPCs) with a concomitant decrease in neurogenesis is observed in the subventricular zone of the LGE at mid-stages of embryogenesis (i.e. E12.5-15.5), which subsequently leads to an increased number of Gsx2-derived OPCs within the adjacent mantle regions of the cortex before birth at E18.5. Moreover, using Olig2cre to conditionally inactivate Gsx2 throughout the ventral telencephalon with the exception of the dorsal (d)LGE, we found that the increase in cortical OPCs in Gsx2 germline mutants are derived from dLGE progenitors. We also show that Ascl1 is required for the expansion of these dLGE-derived OPCs in the cortex of Gsx2 mutants. Complementing these results, gain-of-function experiments in which Gsx2 was expressed throughout most of the late-stage embryonic telencephalon (i.e. E15.5-18.5) result in a significant decrease in the number of cortical OPCs. These results support the notion that high levels of Gsx2 suppress OPC specification in dLGE progenitors and that its downregulation is required for the transition from neurogenesis to oligodendrogenesis.
机译:同源盒基因Gsx2先前已被证明是特定胚胎时间点衍生自侧神经节隆起(LGE)祖细胞的独特神经元亚型规格所必需的。然而,其在这些祖细胞随后生成少突胶质细胞中的作用仍不清楚。为了阐明Gsx2在胚胎腹侧端脑内神经发生和少突胶质形成之间的转换,我们利用了有条件的功能获得和功能丧失方法。在不存在Gsx2表达的情况下,在胚胎发生的中期(即E12.5-15.5),在LGE的脑室下区观察到少突胶质细胞前体细胞(OPC)的增加,伴随着神经发生的减少。在出生前的E18.5年龄段内,邻近皮质皮层区域中Gsx2衍生的OPC数量增加。此外,使用Olig2 cre 使除腹侧(d)LGE外的整个腹侧端脑Gsx2有条件失活,我们发现Gsx2种系突变体中皮质OPC的增加源自dLGE祖细胞。我们还显示,Ascl1是Gsx2突变体皮层中这些dLGE衍生的OPC扩展所必需的。作为这些结果的补充,功能获得实验表明,Gsx2在大多数晚期胚胎端脑(即E15.5-18.5)中均表达,导致皮质OPC数量显着减少。这些结果支持以下观点:高水平的Gsx2抑制dLGE祖细胞中的OPC规格,并且其下调是从神经发生向少突胶质形成的过渡所必需的。

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