首页> 美国卫生研究院文献>The Journal of Neuroscience >mGluR5 in Cortical Excitatory Neurons Exerts Both Cell-Autonomous and -Nonautonomous Influences on Cortical Somatosensory Circuit Formation
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mGluR5 in Cortical Excitatory Neurons Exerts Both Cell-Autonomous and -Nonautonomous Influences on Cortical Somatosensory Circuit Formation

机译:皮质兴奋性神经元中的mGluR5对皮质体感回路的形成具有细胞自主和非自主影响。

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摘要

Glutamatergic neurotransmission plays important roles in sensory map formation. The absence of the group I metabotropic glutamate receptor 5 (mGluR5) leads to abnormal sensory map formation throughout the mouse somatosensory pathway. To examine the role of cortical mGluR5 expression on barrel map formation, we generated cortex-specific mGluR5 knock-out (KO) mice. Eliminating mGluR5 function solely in cortical excitatory neurons affects, not only the whisker-related organization of cortical neurons (barrels), but also the patterning of their presynaptic partners, the thalamocortical axons (TCAs). In contrast, subcortical whisker maps develop normally in cortical-mGluR5 KO mice. In the S1 cortex of cortical-mGluR5 KO, layer IV neurons are homogenously distributed and have no clear relationship to the location of TCA clusters. The altered dendritic morphology of cortical layer IV spiny stellate neurons in cortical-mGluR5 KO mice argues for a cell-autonomous role of mGluR5 in dendritic patterning. Furthermore, morphometric analysis of single TCAs in both cortical- and global-mGluR5 KO mice demonstrated that in these mice, the complexity of axonal arbors is reduced, while the area covered by TCA arbors is enlarged. Using voltage-clamp whole-cell recordings in acute thalamocortical brain slices, we found that KO of mGluR5 from cortical excitatory neurons reduced inhibitory but not excitatory inputs onto layer IV neurons. This suggests that mGluR5 signaling in cortical excitatory neurons nonautonomously modulates the functional development of GABAergic circuits. Together, our data provide strong evidence that mGluR5 signaling in cortical principal neurons exerts both cell-autonomous and -nonautonomous influences to modulate the formation of cortical sensory circuits.
机译:谷氨酸能神经传递在感觉图形成中起重要作用。 I组代谢型谷氨酸受体5(mGluR5)的缺失会导致整个小鼠体感通路中异常的感官图形成。为了检查皮质mGluR5表达在桶图形成中的作用,我们生成了皮质特异的mGluR5敲除(KO)小鼠。仅在皮质兴奋性神经元中消除mGluR5功能不仅影响与晶须相关的皮质神经元(桶状)组织,而且还影响其突触前伴侣(丘脑皮质轴突(TCA))的形成。相反,皮层下晶须图在皮层mGluR5 KO小鼠中正常发育。在皮质mGluR5 KO的S1皮质中,第IV层神经元均匀分布,并且与TCA簇的位置没有明确的关系。皮质mGluR5 KO小鼠的皮质IV层棘状星状神经元的树突形态发生了改变,这表明mGluR5在树突状模式中具有细胞自主作用。此外,在皮质和整体mGluR5 KO小鼠中对单个TCA的形态分析表明,在这些小鼠中,轴突柄的复杂性降低了,而TCA柄所覆盖的区域却扩大了。使用电压钳位的全细胞记录在急性丘脑皮质切片中,我们发现来自皮质兴奋性神经元的mGluR5的KO降低了抑制性输入,而不是兴奋性输入至第四层神经元。这表明皮质兴奋性神经元中的mGluR5信号非自主地调节GABA能回路的功能发展。总之,我们的数据提供了强有力的证据,表明皮质主要神经元中的mGluR5信号传导同时具有细胞自主和非自主影响,以调节皮质感觉回路的形成。

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