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首页> 外文期刊>Brain research. Molecular brain research >Cloning and characterization of a novel NMDA receptor subunit NR3B: a dominant subunit that reduces calcium permeability.
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Cloning and characterization of a novel NMDA receptor subunit NR3B: a dominant subunit that reduces calcium permeability.

机译:新型NMDA受体亚基NR3B的克隆和表征:降低钙渗透性的显性亚基。

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摘要

We report the cloning and characterization of a novel NMDA receptor subunit cDNA, which encodes a predicted polypeptide of 1003 amino acids. Phylogenic analysis indicates that this new subunit is most closely related to NR3A. Therefore, we term it NR3B. Important functional domains of glutamate receptors, such as the ligand-binding domain, the channel pore, and the channel gate, are conserved in NR3B. NR3B mRNA was expressed highly in pons, midbrain, medulla, and the spinal cord, but at low levels in the forebrain and the cerebellum. Although NR3A mRNA expression decreases sharply after the second postnatal weeks, NR3B mRNA expression levels in whole brain were constant during postnatal development and into adult. Coimmunoprecipitation analysis showed that NR3B could form NMDA receptor complex with NR1a and NR2A subunits in heterologous cells. Although expression of NR3B alone did not reconstitute functional NMDA receptors, coexpression of NR3B reduced the Ca(2+) permeability of glutamate-induced currents in cells expressing NR1a and NR2A. These results indicate that NR3B is a dominant modulatory subunit that can modify the function of NMDA receptors. Since high Ca(2+) permeability of NMDA receptors is thought to be a key feature for NMDA receptors to play critical roles in neurodevelopment, synaptic plasticity, and neuronal death, NR3B may contribute to the regulation of these physiological and pathological processes.
机译:我们报告了一个新的NMDA受体亚基cDNA的克隆和表征,该cDNA编码了1003个氨基酸的预测多肽。系统发生分析表明,这个新的亚基与NR3A最密切相关。因此,我们将其称为NR3B。谷氨酸受体的重要功能域,例如配体结合域,通道孔和通道门,在NR3B中是保守的。 NR3B mRNA在脑桥,中脑,延髓和脊髓中高表达,但在前脑和小脑中低表达。尽管出生后第二周后NR3A mRNA表达急剧下降,但整个脑中NR3B mRNA表达水平在出生后和成年后均保持不变。免疫共沉淀分析表明,NR3B可以与异源细胞中的NR1a和NR2A亚基形成NMDA受体复合物。虽然单独的NR3B的表达并不能重构功能性NMDA受体,但NR3B的共表达降低了表达NR1a和NR2A的细胞中谷氨酸诱导电流的Ca(2+)渗透性。这些结果表明NR3B是可以调节NMDA受体功能的主要调节亚基。由于NMDA受体的高Ca(2+)渗透性被认为是NMDA受体在神经发育,突触可塑性和神经元死亡中起关键作用的关键特征,因此NR3B可能有助于调节这些生理和病理过程。

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