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Glycotyping and Specific Separation of Listeria monocytogenes with a Novel Bacteriophage Protein Tool Kit

机译:用新型噬菌体蛋白工具试剂盒糖蛋白酶单核细胞增生术和特异性分离

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The Gram-positive pathogen Listeria monocytogenes can be subdivided into at least 12 different serovars, based on the differential expression of a set of somatic and flagellar antigens. Of note, strains belonging to serovars 1/2a, 1/2b, and 4b cause the vast majority of foodborne listeriosis cases and outbreaks. The standard protocol for serovar determination involves an agglutination method using a set of sera containing cell surface-recognizing antibodies. However, this procedure is imperfect in both precision and practicality, due to discrepancies resulting from subjective interpretation. Furthermore, the exact antigenic epitopes remain unclear, due to the preparation of the absorbed sera and the complex nature of polyvalent antibody binding. Here, we present a novel method for quantitative somatic antigen differentiation using a set of recombinant affinity proteins (cell wall-binding domains and receptor-binding proteins) derived from a collection of Listeria bacteriophages. These proteins enable rapid, objective, and precise identification of the different teichoic acid glycopolymer structures, which represent the O -antigens, and allow a near-complete differentiation. This glycotyping approach confirmed serovar designations of over 60 previously characterized Listeria strains. Using select phage receptor-binding proteins coupled to paramagnetic beads, we also demonstrate the ability to specifically isolate serovar 1/2 or 4b cells from a mixed culture. In addition, glycotyping led to the discovery that strains designated serovar 4e actually possess an intermediate 4b-4d teichoic acid glycosylation pattern, underpinning the high discerning power and precision of this novel technique.IMPORTANCE Listeria monocytogenes is a ubiquitous opportunistic pathogen that presents a major concern to the food industry due to its propensity to cause foodborne illness. The Listeria genus contains 15 different serovars, with most of the variance depending on the wall-associated teichoic acid glycopolymers, which confer somatic antigenicity. Strains belonging to serovars 1/2 and 4b cause the vast majority of listeriosis cases and outbreaks, meaning that regulators, as well as the food industry itself, have an interest in rapidly identifying isolates of these particular serovars in food processing environments. Current methods for phenotypic serovar differentiation are slow and lack accuracy, and the food industry could benefit from new technologies allowing serovar-specific isolation. Therefore, the novel method described here for rapid glycotype determination could present a valuable asset to detect and control this bacterium.
机译:基于一组体细胞和鞭毛抗原的差异表达,可以将克阳性病原体李斯特菌单核细胞增生分成至少12种不同的血清。值得注意的是,属于Serovars 1 / 2a,1 / 2b和4b的菌株导致绝大多数食物丢失的局部病例和爆发。 Serovar测定的标准方案涉及使用含有细胞表面识别抗体的一组血清的凝集方法。然而,由于主观解释导致的差异,这种过程在精度和实用性方面都是不完美的。此外,由于制备吸收的血清和多价抗体结合的复杂性质,确切的抗原表位仍然不清楚。在这里,我们介绍了使用源自李斯特菌菌菌收集的一组重组亲和力蛋白(细胞壁结合域和受体结合蛋白)的定量体细胞抗原分化的新方法。这些蛋白质能够快速,目的和精确地鉴定不同噻吩辛酸甘油聚合物结构,其代表o-antigens,并允许近乎完全的分化。这种糖型方法确认了60多种先前特征的李斯特菌菌株的血清序列。使用选择噬菌体受体结合蛋白偶联至顺磁珠,我们还证明了特异性地分离了混合培养物的血清素1/2或4B细胞的能力。此外,糖型化导致发现菌株指定的Serovar 4e实际上具有中间体4B-4D噻吩酸糖基化图案,其基础上是这种新技术的高辨别力和精度。称为Histeria单核细胞增生是一种普遍关注的普遍存在的机会理性病原体由于其引起食源性疾病的倾向,对食品行业。李斯特菌属含有15种不同的旋转纱,具有大部分差异,这取决于壁的噻吩酸甘油聚合物,其赋予体细胞抗原性。属于Serovars 1/2和4B的菌株导致绝大多数藏病症病例和爆发,这意味着监管机构以及食品工业本身,对食品加工环境中这些特定血管的分离算线具有兴趣。目前的表型血清型分化的方法缓慢且缺乏准确性,食品行业可以从允许血清型孤立的新技术中受益。因此,这里描述的用于快速糖型测定的新方法可以呈现有价值的资产以检测和控制该细菌。

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