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Bergmann glial Sonic hedgehog signaling activity is required for proper cerebellar cortical expansion and architecture

机译:Bergmann Glial Sonic Sonic Hedgehog信号传导活动是适当的小脑皮质扩展和架构所必需的

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Neuronal-glial relationships play a critical role in the maintenance of central nervous system architecture and neuronal specification. A deeper understanding of these relationships can elucidate cellular cross-talk capable of sustaining proper development of neural tissues. In the cerebellum, cerebellar granule neuron precursors (CGNPs) proliferate in response to Purkinje neuron-derived Sonic hedgehog (Shh) before ultimately exiting the cell cycle and migrating radially along Bergmann glial fibers. However, the function of Bergmann glia in CGNP proliferation remains not well defined. Interestingly, the Hh pathway is also activated in Bergmann glia, but the role of Shh signaling in these cells is unknown. In this study, we show that specific ablation of Shh signaling using the tamoxifen-inducible TNCYFP-CreER line to eliminate Shh pathway activator Smoothened in Bergmann glia is sufficient to cause severe cerebellar hypoplasia and a significant reduction in CGNP proliferation. TNCYFP-CreER; Smo(F/-) (SMOCKO) mice demonstrate an obvious reduction in cerebellar size within two days of ablation of Shh signaling. Mutant cerebella have severely reduced proliferation and increased differentiation of CGNPs due to a significant decrease in Shh activity and concomitant activation of Wnt signaling in Smo(CKO) CGNPs, suggesting that this pathway is involved in cross-talk with the Shh pathway in regulating CGNP proliferation. In addition, Purkinje cells are ectopically located, their dendrites stunted, and the Bergmann glial network disorganized. Collectively, these data demonstrate a previously unappreciated role for Bergmann glial Shh signaling activity in the proliferation of CGNPs and proper maintenance of cerebellar architecture.
机译:神经元 - 胶质关系在维护中枢神经系统架构和神经元规范中起着关键作用。更深入地了解这些关系可以阐明能够持续进行神经组织的适当发展的细胞交叉谈。在小脑中,在最终离开细胞周期并沿着Bergmann胶质纤维径向迁移之前,小脑颗粒颗粒前体(CGNPS)响应于Purkinje神经元衍生的声波刺猬(SHH)。然而,在CGNP增殖中Bergmann Glia的功能仍然没有明显定义。有趣的是,HH途径也在Bergmann Glia中激活,但SHH信号在这些细胞中的作用是未知的。在这项研究中,我们表明,使用Tamoxifen-Invucible TnCyfp-refer线来消除在Bergmann Glia中平滑的SHH途径活化剂的SHH信号传导的具体消融足以引起严重的小脑发育不全和CGNP增殖显着降低。 TNCYFP-reer; SMO(F / - )(SMOCKO)小鼠表现出在SHH信号传导的两天内明显减少。由于SHH活性的显着降低以及Smo(CKO)CGNP中的WNT信号传导的显着降低,突变体内肠菌具有严重降低的增殖和增加的CGNP分化,表明该途径与调节CGNP增殖中的SHH途径参与串扰。 。此外,Purkinje细胞在卵形位置定位,它们的树枝状道和博格曼胶质网络杂乱无章。总的来说,这些数据表明了Bergmann Glial Shh信号传导活性在CGNP的激发中的先前未被覆富的作用,并适当维护大脑架构。

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