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首页> 外文期刊>ACS Chemical Biology >Burkholderia pseudomallei Capsular Polysaccharide Recognition by a Monoclonal Antibody Reveals Key Details toward a Biodefense Vaccine and Diagnostics against Melioidosis
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Burkholderia pseudomallei Capsular Polysaccharide Recognition by a Monoclonal Antibody Reveals Key Details toward a Biodefense Vaccine and Diagnostics against Melioidosis

机译:伯克霍尔德菌假mallei荚膜多糖识别的单克隆抗体揭示了生物防御疫苗和预防类蜜蜂病的关键细节。

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摘要

Burkholderia pseudomallei is the bacterium responsible for melioidosis, an infectious disease with high mortality rates. Since melioidosis is a significant public health concern in endemic regions and the organism is currently classified as a potential biothreat agent, the development of effective vaccines and rapid diagnostics is a priority. The capsular polysaccharide (CPS) expressed by B. pseudomallei is a highly conserved virulence factor and a protective antigen. Because of this, CPS is considered an attractive antigen for use in the development of both vaccines and diagnostics. In the present study, we describe the interactions of CPS with the murine monoclonal antibody (mAb) 4C4 using a multidisciplinary approach including organic synthesis, molecular biology techniques, surface plasmon resonance, and nuclear magnetic spectroscopy. Using these methods, we determined the mode of binding between mAb 4C4 and native CPS or ad hoc synthesized capsular polysaccharide fragments. Interestingly, we demonstrated that the O-acetyl moiety of CPS is essential for the interaction of the CPS epitope with mAb 4C4. Collectively, our results provide important insights into the structural features of B. pseudomallei CPS that enable antibody recognition that may help the rational design of CPS-based vaccine candidates. In addition, our findings confirm that the mAb 4C4 is suitable for use in an antibody-based detection assay for diagnosis of B. pseudomallei infections.
机译:假伯克霍尔德氏菌是引起类oid瘤的细菌,类li瘤是一种死亡率高的传染病。由于类疟原虫病是流行地区重要的公共卫生问题,并且该生物体目前已被列为潜在的生物威胁因子,因此开发有效的疫苗和快速诊断是当务之急。假苹果芽孢杆菌表达的荚膜多糖(CPS)是高度保守的毒力因子和保护性抗原。因此,CPS被认为是用于疫苗开发和诊断的有吸引力的抗原。在本研究中,我们使用包括有机合成,分子生物学技术,表面等离子体共振和核磁光谱在内的多学科方法描述了CPS与鼠单克隆抗体(mAb)4C4的相互作用。使用这些方法,我们确定了mAb 4C4与天然CPS或临时合成的荚膜多糖片段之间的结合模式。有趣的是,我们证明了CPS的O-乙酰基对于CPS表位与mAb 4C4的相互作用至关重要。总的来说,我们的结果为假单胞菌CPS的结构特征提供了重要的见识,从而使抗体识别成为可能,这有助于合理设计基于CPS的候选疫苗。此外,我们的发现证实,单克隆抗体4C4适用于基于抗体的检测方法来诊断假性马来芽孢杆菌感染。

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