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Application of a Chimeric Protein Construct having Enterotoxin B and Toxic Shock Syndrome Toxin Domains of S. aureus in Immunodiagnostics

机译:具有肠毒素B和金黄色葡萄球菌毒性休克综合征毒素域的嵌合蛋白构建体在免疫诊断中的应用

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摘要

Staphylococcal enterotoxin B (SEB) and toxic shock syndrome toxin-1 are the super antigens responsible for diseases such as staphylococcal food poisoning and toxic shock syndrome. At low serum concentrations, SEB can trigger toxic shock, profound hypotension and multi organ failure and hence is recognized as biowarfare molecule. In this study, a multidomain fusion protein (r-TE) was generated with specificity for SEB and toxic shock syndrome toxin (Tsst-1). The fusion gene comprising the conserved regions of seb and the tsst genes was codon-optimized for expression in Escherichia coli and encoded a 26 kDa recombinant multidomain chimeric protein (r-TE). Hyperimmune antiserum raised against r-TE specifically reacted with SEB (~28 kDa) and Tsst-1 (~22 kDa) components during Western blot analysis and by plate ELISA in confirmed toxin producing strains of S. aureus. The antigenicity of the SEB component of the r-TE protein was also confirmed using TECRA kit. The described procedure of creating a single protein molecule carrying components of two different toxins whilst still retaining the original antigenic determinants of individual toxins proved highly advantageous in the development of rapid, reliable and cost effective immunoassays and may also have the potential to serve as candidate molecule for vaccine studies.
机译:葡萄球菌肠毒素B(SEB)和中毒性休克综合症毒素1是引起诸如葡萄球菌食物中毒和中毒性休克综合症等疾病的超级抗原。在低血清浓度下,SEB可以触发中毒性休克,严重的低血压和多器官衰竭,因此被认为是生物战分子。在这项研究中,产生了一种多域融合蛋白(r-TE),对SEB和毒性休克综合征毒素(Tsst-1)具有特异性。将包含seb保守区和tsst基因的融合基因进行密码子优化以在大肠杆菌中表达,并编码26 kDa重组多结构域嵌合蛋白(r-TE)。在Western blot分析和平板ELISA中,针对r-TE产生的超免疫抗血清与SEB(〜28 kDa)和Tsst-1(〜22 kDa)成分发生特异性反应,证实了产毒的金黄色葡萄球菌菌株。还使用TECRA试剂盒确认了r-TE蛋白SEB成分的抗原性。所描述的创建带有两种不同毒素成分的单个蛋白质分子同时仍保留单个毒素的原始抗原决定簇的方法,在开发快速,可靠且经济高效的免疫测定方法中被证明具有极大的优势,并且可能具有作为候选分子的潜力用于疫苗研究。

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