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RORβ 在发育中的新皮层中诱导桶状神经元簇。

RORβ induces barrel-like neuronal clusters in the developing neocortex.

机构信息

MGH-HMS Center for Nervous System Repair, Departments of Neurosurgery and Neurology, Program in Neuroscience, Harvard Medical School, Boston, MA 02114, USA.

出版信息

Cereb Cortex. 2012 May;22(5):996-1006. doi: 10.1093/cercor/bhr182. Epub 2011 Jul 28.

Abstract

Neurons in layer IV of the rodent whisker somatosensory cortex are tangentially organized in periodic clusters called barrels, each of which is innervated by thalamocortical axons transmitting sensory information from a single principal whisker, together forming a somatotopic map of the whisker pad. Proper thalamocortical innervation is critical for barrel formation during development, but the molecular mechanisms controlling layer IV neuron clustering are unknown. Here, we investigate the role in this mapping of the nuclear orphan receptor RORβ, which is expressed in neurons in layer IV during corticogenesis. We find that RORβ protein expression specifically increases in the whisker barrel cortex during barrel formation and that in vivo overexpression of RORβ is sufficient to induce periodic barrel-like clustering of cortical neurons. Remarkably, this clustering can be induced as early as E18, prior to innervation by thalamocortical afferents and whisker derived-input. At later developmental stages, these ectopic neuronal clusters are specifically innervated by thalamocortical axons, demonstrated by anterograde labeling from the thalamus and by expression of thalamocortical-specific synaptic markers. Together, these data indicate that RORβ expression levels control cytoarchitectural patterning of neocortical neurons during development, a critical process for the topographical mapping of whisker input onto the cortical surface.

摘要

在啮齿动物触须感觉皮层的 IV 层中,神经元呈周期性簇状排列,称为“桶状结构”,每个“桶状结构”都由投射来自单个主要触须的感觉信息的丘脑皮质轴突支配,共同形成触须垫的躯体定位图。适当的丘脑皮质传入对于发育过程中的“桶状结构”形成至关重要,但控制 IV 层神经元聚类的分子机制尚不清楚。在这里,我们研究了核孤儿受体 RORβ在这个映射中的作用,RORβ 在皮质发生过程中在 IV 层神经元中表达。我们发现,RORβ 蛋白表达在“桶状结构”形成过程中特异性增加,并且体内过表达 RORβ足以诱导皮质神经元周期性的“桶状结构”聚类。值得注意的是,这种聚类早在 E18 时就可以诱导,此时丘脑皮质传入和触须衍生输入尚未支配。在发育的后期阶段,这些异位神经元簇被丘脑皮质轴突特异性支配,这可以通过从丘脑的顺行标记和丘脑皮质特异性突触标记的表达来证明。总之,这些数据表明,RORβ 的表达水平控制了发育过程中皮质神经元的细胞构筑模式,这是将触须输入映射到皮质表面的重要过程。

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