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Role of Site-Specific N-Glycans Expressed on GluA2 in the Regulation of Cell Surface Expression of AMPA-Type Glutamate Receptors.

机译:在GluA2上表达的位点特异性N-聚糖在调节AMPA型谷氨酸受体的细胞表面表达中的作用。

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摘要

The AMPA-type glutamate receptor (AMPAR), which is a tetrameric complex composed of four subunits (GluA1-4) with several combinations, mediates the majority of rapid excitatory synaptic transmissions in the nervous system. Cell surface expression levels of AMPAR modulate synaptic plasticity, which is considered one of the molecular bases for learning and memory formation. To date, a unique trisaccharide (HSO3-3GlcAβ1-3Galβ1-4GlcNAc), human natural killer-1 (HNK-1) carbohydrate, was found expressed specifically on N-linked glycans of GluA2 and regulated the cell surface expression of AMPAR and the spine maturation process. However, evidence that the HNK-1 epitope on N-glycans of GluA2 directly affects these phenomena is lacking. Moreover, it is thought that other N-glycans on GluA2 also have potential roles in the regulation of AMPAR functions. In the present study, using a series of mutants lacking potential N-glycosylation sites (N256, N370, N406, and N413) within GluA2, we demonstrated that the mutant lacking the N-glycan at N370 strongly suppressed the intracellular trafficking of GluA2 from the endoplasmic reticulum (ER) in HEK293 cells. Cell surface expression of GluA1, which is a major subunit of AMPAR in neurons, was also suppressed by co-expression of the GluA2 N370S mutant. The N370S mutant and wild-type GluA2 were co-immunoprecipitated with GluA1, suggesting that N370S was properly associated with GluA1. Moreover, we found that N413 was the main potential site of the HNK-1 epitope that promoted the interaction of GluA2 with N-cadherin, resulting in enhanced cell surface expression of GluA2. The HNK-1 epitope on N-glycan at the N413 of GluA2 was also involved in the cell surface expression of GluA1. Thus, our data suggested that site-specific N-glycans on GluA2 regulate the intracellular trafficking and cell surface expression of AMPAR.
机译:AMPA型谷氨酸受体(AMPAR)是由四个亚基(GluA1-4)与几种组合组成的四聚体复合物,介导了神经系统中大多数快速兴奋性突触传递。 AMPAR的细胞表面表达水平调节突触可塑性,这被认为是学习和记忆形成的分子基础之一。迄今为止,发现一种独特的三糖(HSO3-3GlcAβ1-3Galβ1-4GlcNAc),即人类自然杀手1(HNK-1)碳水化合物,在GluA2的N-连接聚糖上特异性表达,并调节AMPAR和脊柱的细胞表面表达。成熟过程。但是,缺乏证据表明在GluA2的N-聚糖上的HNK-1表位直接影响这些现象。此外,据认为GluA2上的其他N-聚糖在AMPAR功能的调节中也具有潜在作用。在本研究中,我们使用了一系列在GluA2内缺乏潜在N-糖基化位点的突变体(N256,N370,N406和N413),我们证明了在N370处缺少N-聚糖的突变体强烈抑制了GluA2的细胞内运输。 HEK293细胞中的内质网(ER)。 GluA2 N370S突变体的共表达也抑制了神经元中AMPAR的主要亚基GluA1的细胞表面表达。 N370S突变体和野生型GluA2与GluA1共免疫沉淀,表明N370S与GluA1正确相关。此外,我们发现N413是HNK-1表位的主要潜在位点,可促进GluA2与N-钙粘蛋白的相互作用,从而导致GluA2的细胞表面表达增强。 GluA2的N413处N-聚糖上的HNK-1表位也参与了GluA1的细胞表面表达。因此,我们的数据表明,GluA2上的位点特异性N-聚糖调节AMPAR的细胞内运输和细胞表面表达。

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