首页> 美国卫生研究院文献>Cerebral Cortex (New York NY) >Lrp12/Mig13a Reveals Changing Patterns of Preplate Neuronal Polarity during Corticogenesis that Are Absent in Reeler Mutant Mice
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Lrp12/Mig13a Reveals Changing Patterns of Preplate Neuronal Polarity during Corticogenesis that Are Absent in Reeler Mutant Mice

机译:Lrp12 / Mig13a揭示了在Reeler突变小鼠中缺乏的皮质发生过程中前板神经元极性的变化模式。

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摘要

During corticogenesis, the earliest generated neurons form the preplate, which evolves into the marginal zone and subplate. Lrp12/Mig13a, a mammalian gene related to the Caenorhabditis elegans neuroblast migration gene mig-13, is expressed in a subpopulation of preplate neurons that undergo ventrally directed tangential migrations in the preplate layer and pioneer axon projections to the anterior commissure. As the preplate separates, Lrp12/Mig13a-positive neurons polarize in the radial plane and form a pseudocolumnar pattern, prior to moving to a deeper position within the emerging subplate layer. These changes in neuronal polarity do not occur in reeler mutant mice, revealing the earliest known defect in reeler cortical patterning and suggesting that the alignment of preplate neurons into a pseudolayer facilitates the movement of later-born radially migrating neurons into the emerging cortical plate.
机译:在皮质发生过程中,最早产生的神经元形成前板,该前板演变成边缘区和亚板。 Lrp12 / Mig13a是与秀丽隐杆线虫神经母细胞迁移基因mig-13相关的哺乳动物基因,在前板神经元的亚群中表达,该前亚神经元在前板层中受到腹腔定向切向迁移,并形成前轴突突向前连合。随着前板的分离,Lrp12 / Mig13a阳性神经元在径向平面极化并形成伪柱状图案,然后移至新兴的亚板层内的更深位置。这些神经元极性的变化不会发生在reeler突变小鼠中,这揭示了reeler皮质图案中已知的最早缺陷,并表明前板神经元向假层的排列促进了后来出生的径向迁移神经元向新兴皮层板的移动。

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