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Suppressor of Fused Is Critical for Maintenance of Neuronal Progenitor Identity during Corticogenesis

机译:融合抑制器对于皮质形成过程中维持神经元祖细胞的身份至关重要。

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Proper lineage progression and diversification of neural progenitor cells (NPCs) ensures the generation of projection neuron (PN) subtypes in the mammalian neocortex. Here, we show that Suppressor of Fused (Sufu) controls PN specification by maintaining the identity of NPCs in the embryonic neocortex. Deletion of Sufu in NPCs of the E10.5 mouse neocortex led to improper specification of progenitors and a reduction in intermediate progenitors (IPs) during corticogenesis. We found that Sufu deletion resulted in unstable Gli2 and Gli3 activity, leading to the ectopic activation of Sonic hedgehog (Shh) signaling. The role of Sufu in maintaining progenitor identity is critical at early stages of corticogenesis, since deletion of Sufu at E13.5 did not cause similar abnormalities. Our studies revealed that Sufu critically modulates Shh signaling at early stages of neurogenesis for proper specification and maintenance of cortical NPCs to ensure the appropriate generation of cortical PN lineages.
机译:适当的谱系进展和神经祖细胞(NPC)的多样化可确保在哺乳动物新皮层中生成投射神经元(PN)亚型。在这里,我们显示了融合抑制基因(Sufu)通过维持胚胎新皮层中NPC的身份来控制PN规范。在E10.5小鼠新皮层的NPC中删除Sufu会导致皮质形成过程中祖细胞的规格不正确以及中间祖细胞(IPs)的减少。我们发现苏福尔删除导致不稳定的Gli2和Gli3的活动,导致声波刺猬(Shh)信号的异位激活。 Sufu在维持祖细胞身份中的作用在皮质发生的早期阶段至关重要,因为在E13.5处删除Sufu不会引起类似的异常。我们的研究表明,Sufu可以在神经发生的早期阶段关键地调节Shh信号传导,以正确规范和维持皮层NPC,以确保皮层PN谱系的适当生成。

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