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Gli3 次等位基因突变 Pdn 导致外侧神经节隆起的生长、模式形成和轴突导向能力选择性受损。

The Gli3 hypomorphic mutation Pdn causes selective impairment in the growth, patterning, and axon guidance capability of the lateral ganglionic eminence.

机构信息

Centre for Integrative Physiology, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

J Neurosci. 2010 Oct 13;30(41):13883-94. doi: 10.1523/JNEUROSCI.3650-10.2010.

Abstract

Previous studies have defined a requirement for Sonic hedgehog (Shh) signaling in patterning the ventral telencephalon, a major source of the neuronal diversity found in the mature telencephalon. The zinc finger transcription factor Gli3 is a critical component of the Shh signaling pathway and its loss causes major defects in telencephalic development. Gli3 is expressed in a graded manner along the dorsoventral axis of the telencephalon but it is unknown whether Gli3 expression levels are important for dorsoventral telencephalic patterning. To address this, we used the Gli3 hypomorphic mouse mutant Polydactyly Nagoya (Pdn). We show that in Pdn/Pdn embryos, the telencephalic expression of Gli3 remains graded, but Gli3 mRNA and protein levels are reduced, resulting in an upregulation of Shh expression and signaling. These changes mainly affect the development of the lateral ganglionic eminence (LGE), with some disorganization of the medial ganglionic eminence mantle zone. The pallial/subpallial boundary is shifted dorsally and the production of postmitotic neurons is reduced. Moreover, LGE pioneer neurons that guide corticofugal axons into the LGE do not form properly, delaying the entry of corticofugal axons into the ventral telencephalon. Pdn/Pdn mutants also show severe pathfinding defects of thalamocortical axons in the ventral telencephalon. Transplantation experiments demonstrate that the intrinsic ability of the Pdn ventral telencephalon to guide thalamocortical axons is compromised. We conclude that correct Gli3 levels are particularly important for the LGE's growth, patterning, and development of axon guidance capabilities.

摘要

先前的研究已经确定了 Sonic hedgehog (Shh) 信号在腹侧端脑模式形成中的需求,腹侧端脑是成熟端脑中发现的神经元多样性的主要来源。锌指转录因子 Gli3 是 Shh 信号通路的关键组成部分,其缺失会导致端脑发育的主要缺陷。Gli3 沿端脑的背腹轴呈梯度表达,但尚不清楚 Gli3 表达水平对端脑的背腹模式形成是否重要。为了解决这个问题,我们使用了 Gli3 部分缺失的突变体 Nagoya 多指症(Pdn)小鼠。我们发现,在 Pdn/Pdn 胚胎中,Gli3 在端脑的表达仍然呈梯度,但 Gli3 mRNA 和蛋白水平降低,导致 Shh 表达和信号上调。这些变化主要影响外侧神经节隆起(LGE)的发育,内侧神经节隆起帽区有些紊乱。皮层/下皮层边界向背侧移位,产生的有丝分裂后神经元减少。此外,引导皮质投射轴突进入 LGE 的 LGE 先驱神经元不能正常形成,从而延迟了皮质投射轴突进入腹侧端脑。Pdn/Pdn 突变体也表现出丘脑皮质轴突在腹侧端脑的严重寻径缺陷。移植实验表明,Pdn 腹侧端脑引导丘脑皮质轴突的内在能力受损。我们得出结论,正确的 Gli3 水平对于 LGE 的生长、模式形成和引导轴突能力的发育特别重要。

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