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首页> 外文期刊>Journal of Immunological Methods >Auto-induction for high yield expression of recombinant novel isoallergen tropomyosin from King prawn (Melicertus latisulcatus) for improved diagnostics and immunotherapeutics
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Auto-induction for high yield expression of recombinant novel isoallergen tropomyosin from King prawn (Melicertus latisulcatus) for improved diagnostics and immunotherapeutics

机译:自动诱导王虾重组新型异变应原原肌球蛋白高产表达的方法,以改进诊断和免疫治疗

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摘要

Food allergies are increasing worldwide, demonstrating a considerable public health concern. Shellfish allergy is one of the major food groups causing allergic sensitization among adults and children, affecting up to 2% of the general world population. Tropomyosin (TM) is the major allergen in shellfish and frequently used in the diagnosis of allergic sensitization and the detection of cross-contaminated food. To improve and establish better and more sensitive diagnostics for allergies and immunotherapeutics, large quantities of pure allergens are required. To establish a reproducible method for the generation of pure recombinant tropomyosin we utilized in this study different Fscherichia coli strains (NM522, TOP10 and BL21(DE3)RIPL). In addition, isopropyl-beta-D-thiogalactoside (IPTG) induction was compared with a novel auto-induction system to allow the generation of larger quantities of recombinant allergen. We demonstrated that the B-strain of E. coli is better for the expression of TM compared to the K-strain. Moreover, a higher yield could be achieved when using the auto-induction system, with up to 62 mg/l. High yield expressed recombinant TM from King prawn (KP) was compared to recombinant TM from Black tiger prawn (Pen m 1). We demonstrated that recombinant TM from KP and known isoallergen Pen m 1 have very similar molecular and immunological characteristics. Overall, we demonstrate that auto-induction can be used to express larger quantities of recombinant allergens for the development of diagnostic, to quantify allergens as well as immunotherapeutics employing isoallergens. (C) 2014 Elsevier B.V. All rights reserved.
机译:在世界范围内,食物过敏症正在增加,这表明人们对公共卫生的关注很大。贝类过敏是引起成人和儿童过敏致敏的主要食物之一,影响了全世界2%的人口。 Tropomyosin(TM)是贝类中的主要过敏原,经常用于过敏性增敏的诊断和交叉污染食品的检测。为了改善和建立更好的和更敏感的过敏和免疫疗法诊断方法,需要大量的纯过敏原。为了建立用于产生纯重组原肌球蛋白的可再现方法,我们在本研究中使用了不同的费氏大肠杆菌菌株(NM522,TOP10和BL21(DE3)RIPL)。另外,将异丙基-β-D-硫代半乳糖苷(IPTG)诱导与新型自动诱导系统进行了比较,以允许产生大量的重组变应原。我们证明,与K菌株相比,大肠杆菌的B菌株对TM的表达更好。此外,当使用自动感应系统时,最高产量可达62 mg / l。将来自大虾(KP)的高产量表达重组TM与来自黑虎虾(Pen m 1)的重组TM进行比较。我们证明了来自KP的重组TM和已知的异变应原Pen m 1具有非常相似的分子和免疫学特征。总的来说,我们证明了自动诱导可用于表达大量重组变应原,以用于诊断,定量变应原以及采用同等变应原的免疫疗法。 (C)2014 Elsevier B.V.保留所有权利。

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