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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Dopamine D receptor activates extracellular signal-regulated kinase through the specific region in the third cytoplasmic loop.
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Dopamine D receptor activates extracellular signal-regulated kinase through the specific region in the third cytoplasmic loop.

机译:多巴胺D受体通过第三个细胞质环中的特定区域激活细胞外信号调节激酶。

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Abstract To investigate whether the third cytoplasmic loop and the C-terminal cytoplasmic tail of dopamine D(2) receptor (D2R) are involved in extracellular signal-regulated kinase (ERK) activation and subsequent regulation of transcription factors, we established NG108-15 cells stably expressing D2LR and D2SR deleted 40 amino acid residues in the third cytoplasmic loop (NGD2LR-3rd-dele and NGD2SR-3rd-dele) or the C-terminal cytoplasmic tail (NGD2LR-C-dele and NGD2SR-C-dele) and evaluated these receptors' functions using luciferase reporter gene assay. Immunocytochemical studies showed similar intracellular distributions of D2LR-3rd-dele and D2SR-3rd-dele to D2LR and D2SR, respectively. Quinpirole-induced inhibition of forskolin-induced cyclic AMP responsive element (CRE) activation was not affected by the deletion of 40 amino acid residues. However, nuclear factor-kappa B (NF-kappaB) activation by D2R-3rd-dele was largely attenuated compared to that by D2R. Similarly, ERK or serum-responsive element (SRE) activation by quinpirole treatment was totally abolished in NGD2R-3rd-dele cells. Moreover, D2R-C-dele was diffusely distributed or clustered in the cell bodies and lost the receptor functions. Taken together, the 40 amino acid residues in the third cytoplasmic loop are essential for the ERK activation but not for inhibition of adenylyl cyclase through Gi/o proteins. In addition, the C-terminal cytoplasmic tail is essential for membrane association of D2Rs to elicit the receptor functions.
机译:摘要为研究多巴胺D(2)受体(D2R)的第三胞质环和C末端胞质尾是否参与细胞外信号调节激酶(ERK)激活和转录因子的后续调节,我们建立了NG108-15细胞稳定表达D2LR和D2SR缺失了第三个胞质环(NGD2LR-3rd-dele和NGD2SR-3rd-dele)或C末端胞质尾部(NGD2LR-C-dele和NGD2SR-C-dele)的40个氨基酸残基并进行了评估萤光素酶报告基因检测这些受体的功能。免疫细胞化学研究显示D2LR-3rd-dele和D2SR-3rd-dele的细胞内分布分别类似于D2LR和D2SR。喹吡罗诱导的福司柯林诱导的环AMP响应元件(CRE)激活的抑制不受40个氨基酸残基缺失的影响。但是,与D2R相比,D2R-3rd-dele对核因子κB(NF-kappaB)的激活作用大大减弱。同样,在NGD2R-3rd-dele细胞中,通过喹吡罗处理的ERK或血清反应性元件(SRE)激活被完全消除。此外,D2R-C-dele散布或聚集在细胞体内,丧失了受体功能。两者合计,在第三个胞质环中的40个氨基酸残基对于ERK激活是必不可少的,但对于通过Gi / o蛋白抑制腺苷酸环化酶不是必需的。另外,C端细胞质尾对于D2R的膜缔合以引起受体功能是必不可少的。

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