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Investigating the role of protein folding and assembly in cell-type dependent expression of alpha7 nicotinic receptors using a green fluorescent protein chimera

机译:使用绿色荧光蛋白嵌合体研究蛋白质折叠和组装在α7烟碱样受体细胞类型依赖性表达中的作用

摘要

To test the hypothesis that cell-dependent expression of α7 receptors is due to differences in protein folding or assembly, we constructed a chimeric rat α7 subunit with green fluorescent protein (GFP) at the receptor C-terminal. Expression of α7-GFP in Xenopus oocytes resulted in currents that were indistinguishable from wild type receptors but were only 33% of control. 125I-α-bungarotoxin (αBGT) binding at the oocyte surface was reduced to 23% of wild type. Transfection of α7-GFP into GH4C1 cells produced fluorescence that was less intense than GFP alone, but showed significant α-BGT binding compared to transfection with GFP. In contrast, α7-GFP transfection in SH-EP1, HEK293 and CHO-CAR cells produced fluorescence without αBGT binding. Flow cytometry of cells transfected with α7-GFP indicated fluorescence in both SH-EP1 and GH4C1 cells, but surface toxin binding sites and sites immunoprecipitated using anti-GFP antibodies were undetectable in SH-EP1 cells, suggesting a problem in folding/assembly rather than trafficking. Surprisingly, integrated fluorescence intensities in GH4C1 cells transfected with α7-GFP did not correlate with amounts of cell surface or immunoprecipitable αBGT binding. Therefore, GFP folding at the C-terminal of the α7-GFP chimera is cell-line independent, but toxin binding is highly cell-line dependent, suggesting that if altered protein folding is involved in the cell-type dependence of α7 receptor expression, the phenomenon is restricted to specific protein domains. Further, C-terminal GFP-labeled α7 receptors decreased the efficiency of folding/assembly not only of chimeric subunits, but also wild-type subunits, suggesting that the C-terminal is an important domain for α7 receptor assembly.
机译:为了测试α7受体依赖细胞的表达是由于蛋白质折叠或组装差异造成的假说,我们构建了一个嵌合大鼠α7亚基,在受体C端带有绿色荧光蛋白(GFP)。非洲爪蟾卵母细胞中α7-GFP的表达导致电流与野生型受体无法区分,但仅为对照的33%。在卵母细胞表面的125I-α-真菌毒素(αBGT)结合减少到野生型的23%。将α7-GFP转染到GH4C1细胞中产生的荧光强度比单独使用GFP弱,但与用GFP转染相比显示出显着的α-BGT结合。相反,SH-EP1,HEK293和CHO-CAR细胞中的α7-GFP转染产生了无αBGT结合的荧光。用α7-GFP转染的细胞的流式细胞术显示SH-EP1和GH4C1细胞均发荧光,但SH-EP1细胞中未检测到表面毒素结合位点和使用抗GFP抗体免疫沉淀的位点,提示折叠/组装而不是折叠问题贩运出乎意料的是,转染了α7-GFP的GH4C1细胞的整合荧光强度与细胞表面或免疫沉淀的αBGT结合量无关。因此,在α7-GFP嵌合体C末端的GFP折叠是细胞系独立的,但毒素结合高度依赖于细胞系,这表明如果改变的蛋白质折叠与α7受体表达的细胞类型依赖性有关,这种现象仅限于特定的蛋白质结构域。此外,C末端GFP标记的α7受体不仅降低了嵌合亚基的折叠/组装效率,而且降低了野生型亚基的折叠/组装效率,这表明C末端是α7受体组装的重要结构域。

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