首页> 外文期刊>Protein Science: A Publication of the Protein Society >GFP-based evaluation system of recombinant expression through the secretory pathway in insect cells and its application to the extracellular domains of class C GPCRs.
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GFP-based evaluation system of recombinant expression through the secretory pathway in insect cells and its application to the extracellular domains of class C GPCRs.

机译:基于GFP的昆虫细胞分泌途径重组表达评估系统及其在C类GPCR胞外域中的应用。

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摘要

Applications of the GFP-fusion technique have greatly facilitated evaluations of the amounts and qualities of sample proteins used for structural analyses. In this study, we applied the GFP-based sample evaluation to secreted protein expression by insect cells. We verified that a GFP variant, GFPuv, retains proper folding and monodispersity within all expression spaces in Sf9 cells, such as the cytosol, organelles, and even the extracellular space after secretion, and thus can serve as a proper folding reporter for recombinant proteins. We then applied the GFPuv-based system to the extracellular domains of class C G-protein coupled receptors (GPCRs) and examined their localization, folding, and oligomerization upon insect cell expression. The extracellular domain of metabotropic glutamate receptor 1 (mGluR1) exhibited good secreted expression by Sf9 cells, and the secreted proteins formed dimer with a monodisperse hydrodynamic state favorable for crystallization, consistent with the results from previous successful structural analyses. In contrast, the extracellular domains of sweet/umami taste receptors (T1R) almost completely remained in the cell. Notably, the T1R and mGluR1 subfractions that remained in the cellular space showed polydisperse hydrodynamic states with large aggregated fractions, without forming dimers. These results indicated that the proper folding and oligomerization of the extracellular domains of the class C GPCR are achieved through the secretory pathway.
机译:GFP融合技术的应用极大地简化了用于结构分析的样品蛋白质的数量和质量的评估。在这项研究中,我们将基于GFP的样本评估应用于昆虫细胞分泌的蛋白质表达。我们验证了GFP变体GFPuv,在分泌后在Sf9细胞的所有表达空间(如细胞质,细胞器,甚至细胞外空间)内都保留了正确的折叠和单分散性,因此可以用作重组蛋白的正确折叠报告基因。然后,我们将基于GFPuv的系统应用于C类G蛋白偶联受体(GPCR)的胞外域,并检查了它们在昆虫细胞表达后的定位,折叠和寡聚化。代谢型谷氨酸受体1(mGluR1)的胞外域显示出Sf9细胞良好的分泌表达,并且分泌的蛋白质形成具有有利于结晶的单分散流体动力学状态的二聚体,与先前成功的结构分析的结果一致。相反,甜味/鲜味味觉受体(T1R)的胞外域几乎完全保留在细胞中。值得注意的是,保留在细胞空间中的T1R和mGluR1子级分显示出具有大聚集分数的多分散流体力学状态,而没有形成二聚体。这些结果表明,通过分泌途径实现了C类GPCR的胞外域的适当折叠和寡聚。

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