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Evaluation of the Pichia pastoris expression system for the production of GPCRs for structural analysis

机译:巴斯德毕赤酵母表达系统用于构建GPCR进行结构分析的评估

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Background Various protein expression systems, such as Escherichia coli ( E. coli ), Saccharomyces cerevisiae ( S. cerevisiae ), Pichia pastoris ( P. pastoris ), insect cells and mammalian cell lines, have been developed for the synthesis of G protein-coupled receptors (GPCRs) for structural studies. Recently, the crystal structures of four recombinant human GPCRs, namely β2 adrenergic receptor, adenosine A2a receptor, CXCR4 and dopamine D3 receptor, were successfully determined using an insect cell expression system. GPCRs expressed in insect cells are believed to undergo mammalian-like posttranscriptional modifications and have similar functional properties than in mammals. Crystal structures of GPCRs have not yet been solved using yeast expression systems. In the present study, P. pastoris and insect cell expression systems for the human muscarinic acetylcholine receptor M2 subtype (CHRM2) were developed and the quantity and quality of CHRM2 synthesized by both expression systems were compared for the application in structural studies. Results The ideal conditions for the expression of CHRM2 in P. pastoris were 60 hr at 20°C in a buffer of pH 7.0. The specific activity of the expressed CHRM2 was 28.9 pmol/mg of membrane protein as determined by binding assays using [3H]-quinuclidinyl benzilate (QNB). Although the specific activity of the protein produced by P. pastoris was lower than that of Sf9 insect cells, CHRM2 yield in P. pastoris was 2-fold higher than in Sf9 insect cells because P. pastoris was cultured at high cell density. The dissociation constant (Kd) for QNB in P. pastoris was 101.14 ± 15.07 pM, which was similar to that in Sf9 insect cells (86.23 ± 8.57 pM). There were no differences in the binding affinity of CHRM2 for QNB between P. pastoris and Sf9 insect cells. Conclusion Compared to insect cells, P. pastoris is easier to handle, can be grown at lower cost, and can be expressed quicker at a large scale. Yeast, P. pastoris , and insect cells are all effective expression systems for GPCRs. The results of the present study strongly suggested that protein expression in P. pastoris can be applied to the structural and biochemical studies of GPCRs.
机译:背景技术已经开发出多种蛋白质表达系统,例如大肠杆菌(E.coli),酿酒酵母(S.cerevisiae),巴斯德毕赤酵母(P.pastoris),昆虫细胞和哺乳动物细胞系,以合成G蛋白偶联的。受体(GPCR)用于结构研究。最近,利用昆虫细胞表达成功地确定了四种重组人GPCR的晶体结构,即β 2 肾上腺素能受体,腺苷A 2a 受体,CXCR4和多巴胺D3受体。系统。据信在昆虫细胞中表达的GPCR经历了类似哺乳动物的转录后修饰,并且具有与哺乳动物相似的功能特性。 GPCR的晶体结构尚未使用酵母表达系统解决。在本研究中,开发了人类毒蕈碱型乙酰胆碱受体M2亚型(CHRM2)的巴斯德毕赤酵母和昆虫细胞表达系统,并比较了这两种表达系统合成的CHRM2的数量和质量,以用于结构研究。结果CHRM2在巴斯德毕赤酵母中表达的理想条件是在20℃,pH 7.0的缓冲液中60小时。通过使用[ 3 H]-奎宁环戊基苯甲酸酯(QNB)的结合测定,表达的CHRM2的比活性为28.9 pmol / mg膜蛋白。尽管由巴斯德毕赤氏酵母产生的蛋白质的比活性低于Sf9昆虫细胞,但由于在较高的细胞密度下培养巴斯德毕赤酵母,CH.2在巴斯德毕赤酵母中的产量比Sf9昆虫细胞高2倍。巴斯德毕赤酵母中QNB的解离常数(Kd)为101.14±15.07 pM,与Sf9昆虫细胞中的解离常数(86.23±8.57 pM)相似。巴斯德毕赤酵母和Sf9昆虫细胞之间CHRM2对QNB的结合亲和力没有差异。结论与昆虫细胞相比,巴斯德毕赤酵母更易于处理,可以以较低的成本生长,并且可以更快地大规模表达。酵母,巴斯德毕赤酵母和昆虫细胞都是GPCR的有效表达系统。本研究的结果有力地表明,巴斯德毕赤酵母中的蛋白质表达可用于GPCR的结构和生化研究。

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