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在小脑发育的产后阶段,与浦肯野细胞的连接的 climbing fiber 的活性依赖性成熟。

Activity-dependent maturation of climbing fiber to Purkinje cell synapses during postnatal cerebellar development.

机构信息

Department of Neurophysiology, Graduate School of Medicine, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, Japan.

出版信息

Cerebellum. 2012 Jun;11(2):449-50. doi: 10.1007/s12311-011-0337-3.

DOI:10.1007/s12311-011-0337-3
PMID:22194041
Abstract

Cerebellar Purkinje cells (PCs) of newborn rodents are innervated by multiple climbing fibers (CFs). During the first postnatal week, single CFs are strengthened relative to other CFs on the somata of individual PCs. Then, the strengthened CFs undergo translocation to PC dendrites after P9. Elimination of the weaker CFs occurs in two distinct steps, namely the early phase from P7 to around P12 and the late phase from about P12 to around P17. Our previous study demonstrates that CF synapse elimination is severely impaired in null mutant mice lacking Ca(v)2.1, a pore-forming component of P/Q-type voltage-dependent Ca(2+) channel (VDCC). To examine the contribution of postsynaptic P/Q-type VDCC to postnatal rearrangement of CFs, we generated mice with PC-selective deletion of Ca(v)2.1 (PC-Ca(v)2.1 KO). We made whole-cell recordings from PCs in cerebellar slices and examined CF-mediated excitatory postsynaptic currents. We found that PC-Ca(v)2.1 KO PCs had severe defects in selective strengthening of single CFs during the first postnatal week and subsequent CF synapse elimination from P7. Moreover, our morphological analysis revealed that multiple CFs abnormally underwent translocation to PC dendrites in PC-Ca(v)2.1 KO mice. These results indicate that Ca(2+) influx through P/Q-type VDCC into PCs is crucial for selective strengthening of single CFs, early phase elimination and selective translocation of single strengthened CFs to PC dendrites.

摘要

新生啮齿动物的小脑浦肯野细胞 (PCs) 被多个 climbing fibers (CFs) 支配。在出生后的第一周内,单个 CF 相对于个体 PCs 体上的其他 CF 得到增强。然后,在 P9 之后,增强的 CF 会转移到 PC 树突上。较弱的 CF 以两个不同的步骤消除,即从 P7 到 P12 左右的早期阶段和从 P12 左右到 P17 的晚期阶段。我们之前的研究表明,缺乏 Ca(v)2.1 的缺失突变小鼠(P/Q 型电压依赖性钙通道 (VDCC) 的孔形成成分)的 CF 突触消除严重受损。为了研究突触后 P/Q 型 VDCC 对 CF 出生后重排的贡献,我们生成了小脑 PC 选择性缺失 Ca(v)2.1 的小鼠 (PC-Ca(v)2.1 KO)。我们从小脑切片中的 PCs 进行全细胞记录,并检查 CF 介导的兴奋性突触后电流。我们发现,PC-Ca(v)2.1 KO PCs 在出生后的第一周内对单个 CF 进行选择性增强以及随后从 P7 开始的 CF 突触消除方面存在严重缺陷。此外,我们的形态分析表明,多个 CF 异常转移到 PC-Ca(v)2.1 KO 小鼠的 PC 树突上。这些结果表明,Ca(2+) 通过 P/Q 型 VDCC 进入 PCs 的内流对于单个 CF 的选择性增强、早期阶段的消除以及单个增强 CF 向 PC 树突的选择性转移至关重要。

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本文引用的文献

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Postsynaptic P/Q-type Ca2+ channel in Purkinje cell mediates synaptic competition and elimination in developing cerebellum.浦肯野细胞中的突触后 P/Q 型钙通道介导了发育小脑的突触竞争和消除。
Proc Natl Acad Sci U S A. 2011 Jun 14;108(24):9987-92. doi: 10.1073/pnas.1101488108. Epub 2011 May 31.
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Translocation of a "winner" climbing fiber to the Purkinje cell dendrite and subsequent elimination of "losers" from the soma in developing cerebellum.在发育中的小脑中,一条“获胜”的攀缘纤维向浦肯野细胞树突的移位以及随后从胞体中消除“失败”的纤维。
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