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Complex Formation between NheB and NheC Is Necessary to Induce Cytotoxic Activity by the Three-Component Bacillus cereus Nhe Enterotoxin

机译:NheB和NheC之间的复合物形成是由蜡状芽孢杆菌三组分Nhe肠毒素诱导细胞毒活性所必需的

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摘要

The nonhemolytic enterotoxin (Nhe) is known as a major pathogenicity factor for the diarrheal type of food poisoning caused by Bacillus cereus. The Nhe complex consists of NheA, NheB and NheC, all of them required to reach maximum cytotoxicity following a specific binding order on cell membranes. Here we show that complexes, formed between NheB and NheC under natural conditions before targeting the host cells, are essential for toxicity in Vero cells. To enable detection of NheC and its interaction with NheB, monoclonal antibodies against NheC were established and characterized. The antibodies allowed detection of recombinant NheC in a sandwich immunoassay at levels below 10 ng ml−1, but no or only minor amounts of NheC were detectable in natural culture supernatants of B. cereus strains. When NheB- and NheC-specific monoclonal antibodies were combined in a sandwich immunoassay, complexes between NheB and NheC could be demonstrated. The level of these complexes was directly correlated with the relative concentrations of NheB and NheC. Toxicity, however, showed a bell-shaped dose-response curve with a plateau at ratios of NheB and NheC between 50:1 and 5:1. Both lower and higher ratios between NheB and NheC strongly reduced cytotoxicity. When the ratio approached an equimolar ratio, complex formation reached its maximum resulting in decreased binding of NheB to Vero cells. These data indicate that a defined level of NheB-NheC complexes as well as a sufficient amount of free NheB is necessary for efficient cell binding and toxicity. Altogether, the results of this study provide evidence that the interaction of NheB and NheC is a balanced process, necessary to induce, but also able to limit the toxic action of Nhe.
机译:非溶血性肠毒素(Nhe)被认为是由蜡状芽孢杆菌引起的腹泻型食物中毒的主要致病因素。 Nhe复合物由NheA,NheB和NheC组成,它们都需要按照细胞膜上的特定结合顺序达到最大的细胞毒性。在这里,我们显示了在靶向宿主细胞之前,在自然条件下在NheB和NheC之间形成的复合物对于Vero细胞的毒性至关重要。为了能够检测NheC及其与NheB的相互作用,建立并鉴定了针对NheC的单克隆抗体。该抗体允许在三明治免疫测定法中以低于10 ng ml -1 的水平检测重组NheC,但在蜡状芽孢杆菌菌株的自然培养上清液中未检测到或仅有少量NheC。当NheB和NheC特异性单克隆抗体在夹心免疫分析中组合时,可以证明NheB和NheC之间的复合物。这些复合物的水平与NheB和NheC的相对浓度直接相关。然而,毒性显示出钟形的剂量反应曲线,在NheB和NheC的比率在50:1和5:1之间时达到平稳。 NheB和NheC之间的较低和较高比率均大大降低了细胞毒性。当该比率接近等摩尔比率时,复合物形成达到最大,导致NheB与Vero细胞的结合减少。这些数据表明,对于有效的细胞结合和毒性而言,确定水平的NheB-NheC复合物以及足够量的游离NheB是必需的。总而言之,这项研究的结果提供了证据,证明NheB和NheC的相互作用是一个平衡的过程,既是诱导所必需的,又能够限制Nhe的毒性作用。

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