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2 型 K+-Cl-共转运体在发育过程中优先招募到 climbing fiber 突触,在成年小脑浦肯野细胞中则招募到 stellate cell 靶向的树突区。

Type 2 K+ -Cl- cotransporter is preferentially recruited to climbing fiber synapses during development and the stellate cell-targeting dendritic zone at adulthood in cerebellar Purkinje cells.

机构信息

Department of Anatomy, Hokkaido University Graduate School of Medicine, Sapporo, 060-8638, Japan.

出版信息

Eur J Neurosci. 2013 Feb;37(4):532-43. doi: 10.1111/ejn.12076. Epub 2012 Dec 6.

Abstract

Postnatal expression of the type 2 K(+) -Cl(-) cotransporter (KCC2) in neurons lowers the Cl(-) equilibrium potential to values that are more negative than the resting potential, thereby converting the action of Cl(-) -permeable GABA(A) and glycine receptors from excitatory to inhibitory. In the present study, we investigated the spatiotemporal expression of KCC2 in mouse cerebella, particularly focusing on Purkinje cells (PCs). First, we confirmed the fundamental expression profiles of KCC2 in the cerebellum, i.e. neuron-specific expression, somatodendritic distribution, and postnatal upregulation. We also found preferential recruitment to climbing fiber (CF) synapses during the second and third postnatal weeks, when perisomatic innervation in PCs switches from CFs to basket cell axons (BAs) and also when single winner CFs translocate from somata to dendrites. In parallel with this synaptic recruitment, the intracellular distribution shifted from a diffuse cytoplasmic to a predominantly cell surface pattern. In adult PCs, CF synapse-associated accumulation was obscured. Instead, significantly high expression was noted on the surface of PC dendrites in the superficial two-thirds of the molecular layer, in which stellate cells reside and project axons to innervate PC dendrites. Thus, the somatodendritic distribution in PCs is regulated in relation to particular inputs or input zones. During development, timed recruitment of KCC2 to CF synapses will augment inhibitory GABAergic actions by incoming BAs, promoting the CF-to-BA switchover in perisomatic PC innervation. In adulthood, enriched KCC2 expression at the stellate cell-targeting territory of PC dendrites might help in maintaining intracellular Cl(-) homeostasis and the polarity of GABA(A) receptor-mediated responses upon sustained activity of this interneuron.

摘要

出生后,2 型 K(+) -Cl(-)共转运蛋白(KCC2)在神经元中的表达降低了 Cl(-)平衡电位,使其变得比静息电位更负,从而将 Cl(-)可渗透的 GABA(A)和甘氨酸受体的作用从兴奋性转变为抑制性。在本研究中,我们研究了 KCC2 在小鼠小脑中的时空表达,特别是聚焦于浦肯野细胞(PCs)。首先,我们证实了 KCC2 在小脑中的基本表达模式,即神经元特异性表达、体树突分布和出生后上调。我们还发现,在第二个和第三个出生后周,当 PCs 的体树突支配从 climbing fiber (CF) 转移到 basket cell axons (BAs)时,以及当单一 winner CF 从胞体转移到树突时,KCC2 优先募集到 CF 突触。与此突触募集平行的是,细胞内分布从弥散细胞质模式转变为主要的细胞表面模式。在成年 PCs 中,CF 突触相关的聚集被掩盖。相反,在分子层的前 2/3 中,在星形细胞存在并投射轴突以支配 PC 树突的表面上,显著高表达。因此,PCs 的体树突分布与特定的输入或输入区有关。在发育过程中,KCC2 向 CF 突触的定时募集将增强传入 BAs 的抑制性 GABA 能作用,促进体树突 PC 支配中的 CF 向 BA 转换。在成年期,PC 树突上针对星形细胞靶向区域的丰富 KCC2 表达可能有助于维持细胞内 Cl(-)平衡和 GABA(A)受体介导反应的极性,以维持这种中间神经元的持续活动。

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