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Populations of Radial Glial Cells Respond Differently to Reelin and Neuregulin1 in a Ferret Model of Cortical Dysplasia

机译:在皮质发育异常的雪貂模型中,径向胶质细胞群体对Reelin和Neuregulin1的反应不同。

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摘要

Radial glial cells play an essential role during corticogenesis through their function as neural precursors and guides of neuronal migration. Both reelin and neuregulin1 (NRG1) maintain the radial glial scaffold; they also induce expression of Brain Lipid Binding Protein (BLBP), a well known marker of radial glia. Although radial glia in normal ferrets express both vimentin and BLBP, this coexpression diverges at P3; vimentin is expressed in the radial glial processes, while BLBP appears in cells detached from the ventricular zone. Our lab developed a model of cortical dysplasia in the ferret, resulting in impaired migration of neurons into the cortical plate and disordered radial glia. This occurs after exposure to the antimitotic methylazoxymethanol (MAM) on the 24th day of development (E24). Ferrets treated with MAM on E24 result in an overall decrease of BLBP expression; radial glia that continue to express BLBP, however, show only mild disruption compared with the strongly disrupted vimentin expressing radial glia. When E24 MAM-treated organotypic slices are exposed to reelin or NRG1, the severely disrupted vimentin+ radial glial processes are repaired but the slightly disordered BLBP+ processes are not. The realignment of vimentin+ processes was linked with an increase of their BLBP expression. BLBP expressing radial glia are distinguished by being both less affected by MAM treatment and by attempts at repair. We further investigated the effects induced by reelin and found that signaling was mediated via VLDLR/Dab1/Pi3K activation while NRG1 signaling was mediated via erbB3/erbB4/Pi3K. We then tested whether radial glial repair correlated with improved neuronal migration. Repairing the radial glial scaffold is not sufficient to restore neuronal migration; although reelin improves migration of neurons toward the cortical plate signaling through ApoER2/Dab1/PI3K activation, NRG1 does not.
机译:ial神经胶质细胞通过其作为神经前体和神经元迁移的向导而在皮质发生过程中发挥重要作用。 reelin和neuregulin1(NRG1)都维持放射状神经胶质支架。它们还诱导脑脂质结合蛋白(BLBP)的表达,这是radial神经胶质细胞的众所周知的标志物。尽管正常雪貂的radial神经胶质细胞同时表达波形蛋白和BLBP,但这种共表达在P3处有所不同。波形蛋白在the神经胶质细胞过程中表达,而BLBP则出现在与心室区分离的细胞中。我们的实验室建立了雪貂皮质发育异常的模型,导致神经元向皮质板的迁移受损以及and神经胶质细胞紊乱。在发育的第24天(E24)暴露于抗有丝分裂的甲基偶氮氧基甲醇(MAM)之后,就会发生这种情况。在E24上用MAM处理的雪貂导致BLBP表达整体下降;继续表达BLBP的神经胶质细胞与强烈表达波形蛋白的radial神经胶质细胞相比,仅表现出轻度破坏。当E24 MAM处理的器官型切片暴露于reelin或NRG1时,修复了严重破坏的波形蛋白+ radial神经胶质细胞过程,但没有轻微扰乱的BLBP +过程。波形蛋白+进程的重新排列与其BLBP表达的增加有关。表达BLBP的放射状神经胶质细胞的特点是受MAM治疗的影响较小,并且尝试修复的可能性较小。我们进一步研究了reelin诱导的效应,发现信号转导是通过VLDLR / Dab1 / Pi3K激活介导的,而NRG1信号转导是通过erbB3 / erbB4 / Pi3K介导的。然后,我们测试了radial神经胶质修复是否与改善的神经元迁移相关。 radial骨神经胶质支架的修复不足以恢复神经元迁移。尽管reelin通过ApoER2 / Dab1 / PI3K激活改善神经元向皮层板信号的迁移,但NRG1不能。

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