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功能兴奋性 GABAA 受体先于离子型谷氨酸受体存在于放射状胶质样神经干细胞中。

Functional excitatory GABAA receptors precede ionotropic glutamate receptors in radial glia-like neural stem cells.

机构信息

Department of Biochemistry I-Receptor Biochemistry, Ruhr University Bochum, D-44780 Bochum, Germany.

出版信息

Mol Cell Neurosci. 2010 Feb;43(2):209-21. doi: 10.1016/j.mcn.2009.11.002. Epub 2009 Dec 1.

Abstract

The involvement of neurotransmission in neuronal development is a generally accepted concept. Nevertheless, the precise regulation of neurotransmitter receptor expression is still unclear. To investigate the expression profiles of the most important ionotropic neurotransmitter receptors, namely GABA(A) receptors (GABA(A)Rs), NMDA receptors (NMDARs), and AMPA receptors (AMPARs), quantitative RT-PCR, immunoblot analysis and patch clamp studies were performed in in vitro-generated neural stem cells (NSCs). This clearly defined cell line is closely related to radial glia cells, the stem cells in the neonate brain. We found functional GABA(A)Rs of the subunit composition alpha2, beta3, and gamma1 to be expressed. Unexpectedly, functional ionotropic glutamate receptors were absent. However, NSCs expressed the NMDAR subunits NR2A and NR3A, and the AMPAR subunit GluR4 at the protein level, and GluR3 at the mRNA level. The overexpression of functional NMDARs in NSCs led to an increased mRNA level of AMPAR subunits, indicating a role in synaptogenesis. Early neuronal markers remained unchanged. These data extend our knowledge about ionotropic neurotransmitter receptor expression during neuronal development and will aid further investigations on activity-dependent neurogenesis.

摘要

神经递质在神经元发育中的作用是一个被普遍接受的概念。然而,神经递质受体表达的确切调节仍不清楚。为了研究最重要的离子型神经递质受体,即 GABA(A)受体 (GABA(A)Rs)、NMDA 受体 (NMDARs) 和 AMPA 受体 (AMPARs) 的表达谱,我们在体外生成的神经干细胞 (NSCs) 中进行了定量 RT-PCR、免疫印迹分析和膜片钳研究。这种明确定义的细胞系与放射状胶质细胞密切相关,放射状胶质细胞是新生儿大脑中的干细胞。我们发现功能性 GABA(A)R 的亚基组成为 alpha2、beta3 和 gamma1。出乎意料的是,功能性离子型谷氨酸受体不存在。然而,NSCs 在蛋白质水平上表达 NMDAR 亚基 NR2A 和 NR3A,以及 AMPAR 亚基 GluR4,在 mRNA 水平上表达 GluR3。功能性 NMDAR 在 NSCs 中的过表达导致 AMPAR 亚基的 mRNA 水平增加,表明其在突触发生中的作用。早期神经元标志物保持不变。这些数据扩展了我们对神经元发育过程中离子型神经递质受体表达的认识,并将有助于进一步研究活性依赖的神经发生。

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