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新生大鼠大脑中钾氯共转运体KCC2神经元特异性亚型的发育调控

Developmental regulation of the neuronal-specific isoform of K-Cl cotransporter KCC2 in postnatal rat brains.

作者信息

Lu J, Karadsheh M, Delpire E

机构信息

Department of Anesthesiology, Vanderbilt University Medical Center, Nashville, Tennessee 37232-4125, USA.

出版信息

J Neurobiol. 1999 Jun 15;39(4):558-68.

Abstract

We examined the expression of the KCC2 isoform of the K-Cl cotransporter in the developing and adult brain, using an affinity-purified antibody directed against a unique region of the KCC2 protein. Expression was shown to be limited to neurons at the cell bodies and cell processes in the hippocampus and cerebellum. Expression seemed to be the highest at the end of processes that originated from the CA1 pyramidal cells. Developmental up-regulation of KCC2 expression was demonstrated in the entire rat brain by Northern and Western blot analyses, and in the hippocampus by immunofluorescence. Level of KCC2 expression was minimal at birth and increased significantly during postnatal development. This pattern of expression was opposite to the one of the Na-K-2Cl cotransporter that is highly expressed in immature brain and decreases during development. The up-regulation of the K-Cl cotransporter expression is consistent with the developmental down-regulation of the intracellular Cl- concentration in neurons. The level of intracellular Cl-, in turn, determines the excitatory versus inhibitory response of the neurotransmitter gamma-aminobutyric acid in the immature versus mature brain. Finally, KCC2 expression was shown in dorsal root ganglion neurons, demonstrating that expression of the cotransporter is not strictly confined to central nervous system neurons.

摘要

我们使用针对KCC2蛋白独特区域的亲和纯化抗体,检测了K-Cl共转运体的KCC2亚型在发育中和成年大脑中的表达。结果显示,表达仅限于海马体和小脑中神经元的细胞体和细胞突起。在源自CA1锥体细胞的突起末端,表达似乎最高。通过Northern和Western印迹分析在整个大鼠大脑中,以及通过免疫荧光在海马体中,均证实了KCC2表达的发育性上调。KCC2表达水平在出生时最低,并在出生后发育过程中显著增加。这种表达模式与钠钾-2氯共转运体相反,后者在未成熟大脑中高度表达,并在发育过程中减少。K-Cl共转运体表达的上调与神经元细胞内氯离子浓度的发育性下调一致。细胞内氯离子水平反过来又决定了未成熟大脑与成熟大脑中神经递质γ-氨基丁酸的兴奋性与抑制性反应。最后,在背根神经节神经元中显示了KCC2表达,表明共转运体的表达并不严格局限于中枢神经系统神经元。

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