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发育中的皮质板的最外层区域对于放射状迁移模式的转变以及新皮层中 Dab1 依赖性的“内-外”分层都至关重要。

The outermost region of the developing cortical plate is crucial for both the switch of the radial migration mode and the Dab1-dependent "inside-out" lamination in the neocortex.

机构信息

Department of Anatomy, Keio University School of Medicine, Tokyo 160-8582, Japan.

出版信息

J Neurosci. 2011 Jun 22;31(25):9426-39. doi: 10.1523/JNEUROSCI.0650-11.2011.

DOI:10.1523/JNEUROSCI.0650-11.2011
PMID:21697392
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6623472/
Abstract

Mammalian neocortex has a laminated structure that develops in a birth-date-dependent "inside-out" pattern. This layered structure is established by neuronal migration with sequential changes of the migratory mode regulated by several signaling cascades, including the Reelin-Disabled homolog 1 (Dab1) pathway. Although the importance of "locomotion," the major migratory mode, has been well established, the physiological significance of the mode change from locomotion to "terminal translocation," the final migratory mode, is unknown. In this study, we found that the outermost region of the mouse cortical plate has several histologically distinct features and named this region the primitive cortical zone (PCZ). Time-lapse analyses revealed that "locomoting" neurons paused transiently just beneath the PCZ before migrating into it by "terminal translocation." Furthermore, whereas Dab1-knockdown (KD) neurons could reach beneath the PCZ, they failed to enter the PCZ, suggesting that the Dab1-dependent terminal translocation is necessary for entry of the neurons into the PCZ. Importantly, sequential in utero electroporation experiments directly revealed that failure of the Dab1-dependent terminal translocation resulted in disruption of the inside-out alignment within the PCZ and that this disrupted pattern was still preserved in the mature cortex. Conversely, Dab1-KD locomoting neurons could pass by both wild-type and Dab1-KD predecessors beneath the PCZ. Our data indicate that the PCZ is a unique environment, passage of neurons through which involves molecularly and behaviorally different migratory mechanisms, and that the migratory mode change from locomotion to terminal translocation just beneath the PCZ is critical for the Dab1-dependent inside-out lamination in the mature cortex.

摘要

哺乳动物新皮层具有分层结构,其发育呈出生日期依赖的“内-外”模式。这种分层结构是通过神经元迁移建立的,迁移模式的顺序变化受几种信号级联调节,包括 Reelin-Disabled 同源物 1(Dab1)途径。虽然“游走”(主要的迁移模式)的重要性已经得到很好的证实,但从游走模式到“终末转位”(最后的迁移模式)的模式变化的生理意义尚不清楚。在这项研究中,我们发现小鼠皮质板的最外层具有几个组织学上明显不同的特征,并将这个区域命名为原始皮质区(PCZ)。延时分析显示,“游走”神经元在通过“终末转位”迁移到 PCZ 之前,会在 PCZ 下方短暂暂停。此外,尽管 Dab1 敲低(KD)神经元可以到达 PCZ 下方,但它们无法进入 PCZ,表明 Dab1 依赖性的终末转位对于神经元进入 PCZ 是必要的。重要的是,序贯体内电穿孔实验直接表明,Dab1 依赖性终末转位的失败导致 PCZ 内的内-外排列紊乱,并且这种紊乱模式在成熟皮层中仍然存在。相反,Dab1-KD 游走神经元可以通过 PCZ 下方的野生型和 Dab1-KD 前体细胞。我们的数据表明,PCZ 是一个独特的环境,神经元通过该环境需要分子上和行为上不同的迁移机制,而在 PCZ 下方从游走模式到终末转位的迁移模式变化对于 Dab1 依赖性成熟皮层内-外分层是至关重要的。

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本文引用的文献

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Reelin regulates cadherin function via Dab1/Rap1 to control neuronal migration and lamination in the neocortex.Reelin 通过 Dab1/Rap1 调节钙黏蛋白功能,从而控制新皮层中的神经元迁移和分层。
Neuron. 2011 Feb 10;69(3):482-97. doi: 10.1016/j.neuron.2011.01.003.
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Migration defects by DISC1 knockdown in C57BL/6, 129X1/SvJ, and ICR strains via in utero gene transfer and virus-mediated RNAi.通过宫内基因转移和病毒介导的 RNAi 敲低 DISC1 在 C57BL/6、129X1/SvJ 和 ICR 品系中的迁移缺陷。
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Ectopic Reelin induces neuronal aggregation with a normal birthdate-dependent "inside-out" alignment in the developing neocortex.异位 Reelin 诱导具有正常出生日期依赖性的“内-外”排列的神经元聚集在发育中的新皮层中。
J Neurosci. 2010 Aug 18;30(33):10953-66. doi: 10.1523/JNEUROSCI.0486-10.2010.
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Nova2 regulates neuronal migration through an RNA switch in disabled-1 signaling.Nova2 通过在Disabled-1 信号中的 RNA 开关调节神经元迁移。
Neuron. 2010 Jun 24;66(6):848-58. doi: 10.1016/j.neuron.2010.05.007.
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Cullin 5 regulates cortical layering by modulating the speed and duration of Dab1-dependent neuronal migration.Cullin 5 通过调节 Dab1 依赖性神经元迁移的速度和持续时间来调节皮质分层。
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Relative importance of the tyrosine phosphorylation sites of Disabled-1 to the transmission of Reelin signaling.Disabled-1 酪氨酸磷酸化位点对 Reelin 信号转导的相对重要性。
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Downregulation of functional Reelin receptors in projection neurons implies that primary Reelin action occurs at early/premigratory stages.投射神经元中功能性Reelin受体的下调意味着Reelin的主要作用发生在早期/迁移前阶段。
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Differences of migratory behavior between direct progeny of apical progenitors and basal progenitors in the developing cerebral cortex.发育中的大脑皮层中顶端祖细胞和基底祖细胞的直接后代之间迁移行为的差异。
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Reelin stabilizes the actin cytoskeleton of neuronal processes by inducing n-cofilin phosphorylation at serine3.Reelin通过诱导n-丝切蛋白在丝氨酸3处磷酸化来稳定神经元突起的肌动蛋白细胞骨架。
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10
Crk and Crk-like play essential overlapping roles downstream of disabled-1 in the Reelin pathway.在Reelin信号通路中,Crk和类Crk在Disabled-1下游发挥重要的重叠作用。
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