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首页> 外文期刊>Nature Communications >TBR2 coordinates neurogenesis expansion and precise microcircuit organization via Protocadherin 19 in the mammalian cortex
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TBR2 coordinates neurogenesis expansion and precise microcircuit organization via Protocadherin 19 in the mammalian cortex

机译:TBR2通过哺乳动物皮层中的Protocadherin 19坐标坐标,通过Protocadherin 19坐标和精确的微电路组织

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Cerebral cortex expansion is a hallmark of mammalian brain evolution; yet, how increased neurogenesis is coordinated with structural and functional development remains largely unclear. The T-box protein TBR2/EOMES is preferentially enriched in intermediate progenitors and supports cortical neurogenesis expansion. Here we show that TBR2 regulates fine-scale spatial and circuit organization of excitatory neurons in addition to enhancing neurogenesis in the mouse cortex. TBR2 removal leads to a significant reduction in neuronal, but not glial, output of individual radial glial progenitors as revealed by mosaic analysis with double markers. Moreover, in the absence of TBR2, clonally related excitatory neurons become more laterally dispersed and their preferential synapse development is impaired. Interestingly, TBR2 directly regulates the expression of Protocadherin 19 (PCDH19), and simultaneous PCDH19 expression rescues neurogenesis and neuronal organization defects caused by TBR2 removal. Together, these results suggest that TBR2 coordinates neurogenesis expansion and precise microcircuit assembly via PCDH19 in the mammalian cortex.
机译:脑皮质扩张是哺乳动物脑进化的标志;然而,由于结构和功能性的构造和功能发展,如何增加神经发生如何仍然不清楚。 T-Box蛋白TBR2 / eomes优先富集中间祖细胞,并支持皮质神经发生的膨胀。在这里,除了在小鼠皮质中增强神经发生之外,TBR2还调节兴奋性神经元的细尺空间和电路组织。 TBR2去除导致神经元显着降低,但不胶质,输出单个径向胶质祖细胞,如马赛克分析与双标记所揭示。此外,在没有TBR2的情况下,克隆相关的兴奋性神经元变得更横向分散,并且它们的优惠突触发育受到损害。有趣的是,TBR2直接调节Protocadherin 19(PCDH19)的表达,同时PCDH19表达拯救神经发生和由TBR2去除引起的神经元组织缺陷。这些结果表明,TBR2通过PCDH19在哺乳动物皮质中坐标坐标。

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