Vivithanaporn Pornpun, Yan Sheng, Swanson Geoffrey T
Department of Pharmacology and Toxicology, University of Texas Medical Branch, Galveston, Texas 77555-1031, USA.
J Biol Chem. 2006 Jun 2;281(22):15475-84. doi: 10.1074/jbc.M512098200. Epub 2006 Apr 4.
Assembly and trafficking of neurotransmitter receptors are processes contingent upon interactions between intracellular chaperone systems and discrete determinants in the receptor proteins. Kainate receptor subunits, which form ionotropic glutamate receptors with diverse roles in the central nervous system, contain a variety of trafficking determinants that promote either membrane expression or intracellular sequestration. In this report, we identify the coatomer protein complex I (COPI) vesicle coat as a critical mechanism for retention of the kainate receptor subunit KA2 in the endoplasmic reticulum. COPI subunits immunoprecipitated with KA2 subunits from both cerebellum and COS-7 cells, and beta-COP protein interacted directly with immobilized KA2 peptides containing the arginine-rich retention/retrieval determinant. Association between COPI proteins and KA2 subunits was significantly reduced upon alanine substitution of this signal in the cytoplasmic tail of KA2. Temperature-sensitive degradation of COPI complex proteins was correlated with an increase in plasma membrane localization of the homologous KA2 receptor. Assembly of heteromeric GluR6a/KA2 receptors markedly reduced association of KA2 and COPI. Finally, the reduction in COPI binding was correlated with an increased association with 14-3-3 proteins, which mediate forward trafficking of other integral signaling proteins. These interactions therefore represent a critical early checkpoint for biosynthesis of functional KARs.
神经递质受体的组装和运输过程取决于细胞内伴侣系统与受体蛋白中离散决定因素之间的相互作用。海人酸受体亚基可形成离子型谷氨酸受体,在中枢神经系统中发挥多种作用,它包含多种促进膜表达或细胞内隔离的运输决定因素。在本报告中,我们确定衣被蛋白复合物I(COPI)囊泡衣被是将海人酸受体亚基KA2保留在内质网中的关键机制。从大脑小脑和COS-7细胞中用KA2亚基免疫沉淀COPI亚基,并且β-COP蛋白与含有富含精氨酸的保留/回收决定因素的固定化KA2肽直接相互作用。在KA2细胞质尾部的该信号被丙氨酸取代后,COPI蛋白与KA2亚基之间的结合显著减少。COPI复合蛋白的温度敏感性降解与同源KA2受体的质膜定位增加相关。异聚体GluR6a/KA2受体的组装显著降低了KA2与COPI的结合。最后,COPI结合的减少与与14-3-3蛋白的结合增加相关,14-3-3蛋白介导其他整合信号蛋白的正向运输。因此,这些相互作用代表了功能性海人酸受体生物合成的关键早期检查点。