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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Roles of glutamate receptor delta 2 subunit (GluRdelta 2) and metabotropic glutamate receptor subtype 1 (mGluR1) in climbing fiber synapse elimination during postnatal cerebellar development.
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Roles of glutamate receptor delta 2 subunit (GluRdelta 2) and metabotropic glutamate receptor subtype 1 (mGluR1) in climbing fiber synapse elimination during postnatal cerebellar development.

机译:谷氨酸受体δ2亚基(GluRdelta 2)和代谢型谷氨酸受体亚型1(mGluR1)在出生后小脑发育过程中消除攀岩纤维突触中的作用。

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摘要

Climbing fiber (CF) synapse formation onto cerebellar Purkinje cells (PCs) is critically dependent on the synaptogenesis from parallel fibers (PFs), the other input to PCs. Previous studies revealed that deletion of the glutamate receptor delta2 subunit (GluRdelta2) gene results in persistent multiple CF innervation of PCs with impaired PF synaptogenesis, whereas mutation of the metabotropic glutamate receptor subtype 1 (mGluR1) gene causes multiple CF innervation with normal PF synaptogenesis. We demonstrate that atypical CF-mediated EPSCs (CF-EPSCs) with slow rise times and small amplitudes coexisted with typical CF-EPSCs with fast rise times and large amplitudes in PCs from GluRdelta2 mutant cerebellar slices. CF-EPSCs in mGluR1 mutant and wild-type PCs had fast rise times. Atypical slow CF responses of GluRdelta2 mutant PCs were associated with voltage-dependent Ca(2+) signals that were confined to PC distal dendrites. In the wild-type and mGluR1 mutant PCs, CF-induced Ca(2+) signals involved both proximal and distal dendrites. Morphologically, CFs of GluRdelta2 mutant mice extended to the superficial regions of the molecular layer, whereas those of wild-type and mGluR1 mutant mice did not innervate the superficial one-fifth of the molecular layer. It is therefore likely that surplus CFs of GluRdelta2 mutant mice form ectopic synapses onto distal dendrites, whereas those of wild-type and mGluR1 mutant mice innervate proximal dendrites. These findings suggest that GluRdelta2 is required for consolidating PF synapses and restricting CF synapses to the proximal dendrites, whereas the mGluR1-signaling pathway does not affect PF synaptogenesis but is involved in eliminating surplus CF synapses at the proximal dendrites.
机译:在小脑浦肯野细胞(PC)上攀爬纤维(CF)突触的形成关键取决于平行纤维(PFs)的突触发生,而平行纤维(PFs)是PC的其他输入。先前的研究表明,谷氨酸受体delta2亚基(GluRdelta2)基因的缺失会导致PF突触形成受损的PC的持续CF支配,而代谢型谷氨酸受体亚型1(mGluR1)基因的突变会导致PF突触正常的多个CF支配。我们证明了非典型CF介导的EPSC(CF-EPSC)具有缓慢的上升时间和小幅度与典型的CF-EPSC具有快速上升时间和大幅度的GluRdelta2突变小脑切片中的PC共存。 mGluR1突变体和野生型PC中的CF-EPSC具有快速上升时间。 GluRdelta2突变型PCs的非典型慢CF反应与电压依赖性Ca(2+)信号相关,后者局限于PC远端树突。在野生型和mGluR1突变PCs,CF诱导的Ca(2+)信号涉及近端和远端树突。从形态上讲,GluRdelta2突变小鼠的CFs延伸至分子层的表面区域,而野生型和mGluR1突变小鼠的CFs不支配分子层的表面五分之一。因此,GluRdelta2突变小鼠的多余CF可能在远端树突上形成异位突触,而野生型和mGluR1突变小鼠的CF则在近端树突上受神经支配。这些发现表明,GluRdelta2是巩固PF突触和将CF突触限制在近端树突上所必需的,而mGluR1信号通路并不影响PF突触形成,但参与消除近端树突上多余的CF突触。

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