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Purification of Recombinant Peanut Allergen Ara h 1 and Comparison of IgE Binding to the Natural Protein

机译:重组花生过敏原Ara h 1的纯化及IgE与天然蛋白结合的比较

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Allergic reactions to food are on the rise worldwide and there is a corresponding increase in interest to understand the molecular mechanisms responsible. Peanut allergies are the most problematic because the reaction often persists into adulthood and can be as severe as anaphylaxis and death. The purpose of the work presented here was to develop a reproducible method to produce large quantities of pure recombinant Ara h 1(rAra h 1) that will enable standardization of immunological tests for patients and allow structural and immunological studies on the wild type and mutagenized forms of the protein. Ara h 1 is initially a pre-pro-protein which, following two endoproteolytic cleavages, becomes the mature form found in peanut. The mature form however has flexible regions that make it refractory to some structural studies including crystallography. Therefore, independent purification of the mature and core regions was desirable. Expression constructs were synthesized cDNA clones for each in a pET plasmid vector without tags. Codons were optimized for expression in E. coli. High-level expression was achieved in BL21 strains. Purification to near homogeneity was achieved by a combination of ammonium sulfate precipitation and ion exchange chromatography. The purified rAra h 1 was then compared with natural Ara h 1 for IgE binding. All patients recognized both the folded natural and rAra h 1, but the IgE binding to the rArah1 was significantly reduced in comparison to the natural allergen, which could potentially make it useful for immunotherapeutic purposes.
机译:在世界范围内,对食物的过敏反应正在增加,因此人们对了解引起这种反应的分子机制的兴趣也相应增加。花生过敏是最成问题的,因为这种反应通常会持续到成年,甚至可能与过敏反应和死亡一样严重。本文提出的工作目的是开发一种可重现的方法,以生产大量的纯重组Ara h 1(rAra h 1),这将使患者的免疫学测试标准化,并允许对野生型和诱变形式进行结构和免疫学研究蛋白质。 Ara h 1最初是一种前原蛋白,经过两次内蛋白水解切割后成为花生中的成熟形式。然而,成熟形式具有柔性区域,这使其对某些结构研究(包括晶体学)不具吸引力。因此,期望独立纯化成熟和核心区域。表达构建体是在没有标签的pET质粒载体中合成的每个cDNA克隆。优化密码子以在大肠杆菌中表达。在BL21菌株中实现了高水平表达。硫酸铵沉淀法和离子交换色谱法相结合,纯化至近乎均匀。然后将纯化的rAra h 1与天然Ara h 1进行IgE结合。所有患者均识别了折叠的天然和rAra h 1,但与天然变应原相比,与rArah1结合的IgE显着降低,这可能使其可用于免疫治疗。

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