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Functional Expression of Adenosine A 3 Receptor in Yeast Utilizing a Chimera with the A 2A R C-Terminus

机译:酵母中腺苷A 3受体的功能表达利用嵌合的2A R C-末端

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The adenosine A 3 receptor (A 3 R) is the only adenosine receptor subtype to be overexpressed in inflammatory and cancer cells and therefore is considered a novel and promising therapeutic target for inflammatory diseases and cancer. Heterologous expression of A 3 R at levels to allow biophysical characterization is a major bottleneck in structure-guided drug discovery efforts. Here, we apply protein engineering using chimeric receptors to improve expression and activity in yeast. Previously we had reported improved expression and trafficking of the chimeric A 1 R variant using a similar approach. In this report, we constructed chimeric A 3 /A 2A R comprising the N-terminus and transmembrane domains from A 3 R (residues 1–284) and the cytoplasmic C-terminus of the A 2A R (residues 291–412). The chimeric receptor showed approximately 2-fold improved expression with a 2-fold decreased unfolded protein response when compared to wild type A 3 R. Moreover, by varying culture conditions such as initial cell density and induction temperature a further 1.7-fold increase in total receptor yields was obtained. We observed native-like coupling of the chimeric receptor to G ai- Gpa1 in engineered yeast strains, activating the downstream, modified MAPK pathway. This strategy of utilizing chimeric receptor variants in yeast thus provides an exciting opportunity to improve expression and activity of “difficult-to-express” receptors, expanding the opportunity for utilizing yeast in drug discovery.
机译:腺苷A 3受体(A 3 R)是唯一在炎症和癌细胞中过表达的腺苷受体亚型,因此被认为是一种新颖的炎症性疾病和癌症的治疗靶标。 3 r在水平下允许生物物理表征的异源表达是结构引导的药物发现努力的主要瓶颈。在这里,我们使用嵌合受体应用蛋白质工程,以改善酵母中的表达和活性。以前我们报告使用类似方法改善表达和贩运嵌合A 1 R变体。在本报告中,我们构建了嵌合A 3 / A 2a r,其包含来自3 r(残基1-284)的N-末端和跨膜结构域和2a R的细胞质C-末端(残留物291-412)。与野生型A 3 R相比,嵌合受体显示出约2倍的改善表达,其增加了2倍的展开蛋白响应,而且通过不同的培养条件,例如初始细胞密度和诱导温度进一步增加1.7倍获得受体产率。我们观察到嵌合受体的天然偶联剂在工程酵母菌株中,激活下游的修饰MAPK途径。因此,这种利用酵母中嵌合受体变体的策略提供了改善“难以表达”受体的表达和活性的令人兴奋的机会,扩大利用酵母在药物发现中的机会。

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