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Antibody Binding Studies Reveal Conformational Flexibility of the Bacillus cereus Non-Hemolytic Enterotoxin (Nhe) A-Component

机译:抗体结合研究揭示了蜡样芽孢杆菌非溶血肠毒素(Nhe)A组分的构象柔性

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摘要

The non-hemolytic enterotoxin complex (Nhe) is supposed to be the main virulence factor of B. cereus causing a diarrheal outcome of food poisoning. This tripartite toxin consists of the single components NheA, -B and -C all of them being necessary for maximum toxicity. In the past, research activities aiming to elucidate the mode-of-action of Nhe were mostly focused on the B- and C-component. In this study the generation of novel monoclonal antibodies (mAb) and their thorough characterization enabled the determination of key features for NheA. By the means of immunoaffinity chromatography it could be shown that NheA does not interact with -B and -C in solution. Additionally, the establishment of a highly sensitive sandwich-EIA now enables the detection of NheA in B. cereus supernatants down to 20 pg ml-1.Peptide-based epitope mapping in combination with partially deleted recombinant NheA fragments allowed the allocation of the binding regions for the three mAbs under study. Furthermore, by different EIA set-ups the conformational flexibility of NheA could be shown. For two of the antibodies under study different mechanisms of NheA neutralization were proven. Due to prevention of complete pore formation by one of the antibodies, NheA could be detected in an intermediate stage of the tripartite complex on the cell surface. Taken together, the results obtained in the present study allow a refinement of the mode-of-action for the Nhe toxin-complex.
机译:非溶血性肠毒素复合物(Nhe)被认为是导致食物中毒腹泻的蜡状芽孢杆菌的主要致病因子。这种三方毒素由NheA,-B和-C单一成分组成,它们都是最大毒性所必需的。过去,旨在阐明Nhe的作用方式的研究活动主要集中在B和C成分上。在这项研究中,新型单克隆抗体(mAb)的产生及其彻底的表征使得能够确定NheA的关键特征。通过免疫亲和色谱法可以证明NheA在溶液中不与-B和-C相互作用。此外,通过建立高度敏感的三明治式EIA,可以检测出蜡样芽孢杆菌上清液中低至20 pg ml -1 的NheA。基于肽的抗原决定簇结合部分缺失的重组NheA片段允许分配正在研究的三种mAb的结合区域。此外,通过不同的EIA设置,可以显示NheA的构象灵活性。对于正在研究的两种抗体,证明了NheA中和的不同机制。由于一种抗体阻止了完整的孔形成,因此可以在细胞表面上三方复合物的中间阶段检测到NheA。两者合计,本研究中获得的结果允许细化Nhe毒素复合物的作用方式。

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