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首页> 外文期刊>The Journal of Comparative Neurology >Emx1 and Emx2 cooperate to regulate cortical size, lamination, neuronal differentiation, development of cortical efferents, and thalamocortical pathfinding.
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Emx1 and Emx2 cooperate to regulate cortical size, lamination, neuronal differentiation, development of cortical efferents, and thalamocortical pathfinding.

机译:Emx1和Emx2协同调节皮层大小,分层,神经元分化,皮层传出发育和丘脑皮层寻路。

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摘要

The homeobox transcription factors Emx1 and Emx2 are expressed in overlapping patterns that include cortical progenitors in the dorsal telencephalic neuroepithelium. We have addressed cooperation of Emx1 and Emx2 in cortical development by comparing phenotypes in Emx1; Emx2 double mutant mice with wild-type and Emx1 and Emx2 single mutants. Emx double mutant cortex is greatly reduced compared with wild types and Emx single mutants; the hippocampus and dentate gyrus are absent, and growth and lamination of the olfactory bulbs are defective. Cell proliferation and death are relatively normal early in cortical neurogenesis, suggesting that hypoplasia of the double mutant cortex is primarily due to earlier patterning defects. Expression of cortical markers persists in the reduced double mutant neocortex, but the laminar patterns exhibited are less sharp than normal, consistent with deficient cytoarchitecture, probably due in part to reduced numbers of preplate and Reelin-positive Cajal-Retzius neurons. Subplate neurons also exhibit abnormal differentiation in double mutants. Cortical efferent axons fail to exit the double mutant cortex, and TCAs pass through the striatum and approach the cortex but do not enter it. This TCA pathfinding defect appears to be non-cell autonomous and supports the hypothesis that cortical efferents are required scaffolds to guide TCAs into cortex. In double mutants, some TCAs fail to turn into ventral telencephalon and take an aberrant ventral trajectory; this pathfinding defect correlates with an Emx2 expression domain in ventral telencephalon. The more severe phenotypes in Emx double mutants suggest that Emx1 and Emx2 cooperate to regulate multiple features of cortical development.
机译:同源框转录因子Emx1和Emx2以重叠模式表达,其中包括背侧脑神经上皮中的皮质祖细胞。我们通过比较Emx1中的表型来解决Emx1和Emx2在皮质发育中的合作。具有野生型的Emx2双突变小鼠以及Emx1和Emx2单突变体。与野生型和Emx单突变体相比,Emx双突变体皮层大大减少。缺少海马和齿状回,嗅球的生长和层压不良。在皮层神经发生的早期,细胞增殖和死亡是相对正常的,这表明双重突变皮层的发育不全主要是由于较早的模式缺陷。皮质标记物的表达在减少的双突变新皮层中持续存在,但是所显示的层状模式不如正常的清晰,这与细胞结构缺陷相一致,这可能部分是由于前板和Reelin阳性的Cajal-Retzius神经元数量减少所致。亚板神经元在双突变体中也表现出异常分化。皮质传出的轴突不能离开双重突变皮质,TCA穿过纹状体并到达皮质,但没有进入皮质。这种TCA寻路缺陷似乎是非细胞自主性的,并支持以下假设:皮层传出物是引导TCA进入皮层的支架。在双重突变体中,一些TCAs不能变成腹侧端脑并采取异常的腹侧轨迹。该寻路缺陷与腹侧端脑中的Emx2表达域相关。 Emx双突变体中更严重的表型表明Emx1和Emx2协同调节皮质发育的多个特征。

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