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A novel O-linked glycan modulates Campylobacter jejuni major outer membrane protein-mediated adhesion to human histo-blood group antigens and chicken colonization

机译:一种新型的O联聚糖调节空肠弯曲杆菌主要外膜蛋白介导的对人组织血组抗原的粘附和鸡的定殖

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摘要

Campylobacter jejuni is an important cause of human foodborne gastroenteritis; strategies to prevent infection are hampered by a poor understanding of the complex interactions between host and pathogen. Previous work showed that C. jejuni could bind human histo-blood group antigens (BgAgs) in vitro and that BgAgs could inhibit the binding of C. jejuni to human intestinal mucosa ex vivo. Here, the major flagella subunit protein (FlaA) and the major outer membrane protein (MOMP) were identified as BgAg-binding adhesins in C. jejuni NCTC11168. Significantly, the MOMP was shown to be O-glycosylated at Thr268; previously only flagellin proteins were known to be O-glycosylated in C. jejuni. Substitution of MOMP Thr268 led to significantly reduced binding to BgAgs. The O-glycan moiety was characterized as Gal(β1–3)-GalNAc(β1–4)-GalNAc(β1–4)-GalNAcα1-Thr268; modelling suggested that O-glycosylation has a notable effect on the conformation of MOMP and this modulates BgAg-binding capacity. Glycosylation of MOMP at Thr268 promoted cell-to-cell binding, biofilm formation and adhesion to Caco-2 cells, and was required for the optimal colonization of chickens by C. jejuni, confirming the significance of this O-glycosylation in pathogenesis.
机译:空肠弯曲菌是人类食源性胃肠炎的重要原因。对宿主和病原体之间复杂相互作用的了解不足,阻碍了预防感染的策略。先前的工作表明空肠弯曲杆菌可以在体外结合人组织血型组抗原(BgAgs),而BgAgs可以在体外抑制空肠弯曲杆菌与人肠粘膜的结合。在这里,主要鞭毛亚基蛋白(FlaA)和主要外膜蛋白(MOMP)被鉴定为空肠弯曲菌NCTC11168中的BgAg结合粘附素。值得注意的是,MOMP在Thr 268 处被O-糖基化;以前,已知空肠弯曲杆菌中仅鞭毛蛋白被O-糖基化。 MOMP Thr 268 的取代导致与BgAg的结合显着降低。 O-聚糖部分的特征为Gal(β1-3)-GalNAc(β1-4)-GalNAc(β1-4)-GalNAcα1-Thr 268 ;建模表明,O-糖基化对MOMP的构象有显着影响,并调节BgAg的结合能力。 MOMP在Thr 268 处的糖基化促进了细胞间的结合,生物膜的形成以及对Caco-2细胞的粘附,这是空肠弯曲杆菌对鸡进行最佳定居所必需的,证实了这一点的重要性发病机制中的O-糖基化。

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