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Fut2-null mice display an altered glycosylation profile and impaired BabA-mediated Helicobacter pylori adhesion to gastric mucosa

机译:Fut2空小鼠显示改变的糖基化配置文件和BabA介导的幽门螺杆菌粘附到胃黏膜受损

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摘要

Glycoconjugates expressed on gastric mucosa play a crucial role in host–pathogen interactions. The FUT2 enzyme catalyzes the addition of terminal α(1,2)fucose residues, producing the H type 1 structure expressed on the surface of epithelial cells and in mucosal secretions of secretor individuals. Inactivating mutations in the human FUT2 gene are associated with reduced susceptibility to Helicobacter pylori infection. H. pylori infects over half the world's population and causes diverse gastric lesions, from gastritis to gastric cancer. H. pylori adhesion constitutes a crucial step in the establishment of a successful infection. The BabA adhesin binds the Leb and H type 1 structures expressed on gastric mucins, while SabA binds to sialylated carbohydrates mediating the adherence to inflamed gastric mucosa. In this study, we have used an animal model of nonsecretors, Fut2-null mice, to characterize the glycosylation profile and evaluate the effect of the observed glycan expression modifications in the process of H. pylori adhesion. We have demonstrated expression of terminal difucosylated glycan structures in C57Bl/6 mice gastric mucosa and that Fut2-null mice showed marked alteration in gastric mucosa glycosylation, characterized by diminished expression of α(1,2)fucosylated structures as indicated by lectin and antibody staining and further confirmed by mass spectrometry analysis. This altered glycosylation profile was further confirmed by the absence of Fucα(1,2)-dependent binding of calicivirus virus-like particles. Finally, using a panel of H. pylori strains, with different adhesin expression profiles, we have demonstated an impairment of BabA-dependent adhesion of H. pylori to Fut2-null mice gastric mucosa, whereas SabA-mediated binding was not affected.
机译:在胃粘膜上表达的糖结合物在宿主与病原体的相互作用中起着至关重要的作用。 FUT2酶催化末端α(1,2)岩藻糖残基的添加,产生在上皮细胞表面和分泌个体的粘膜分泌物中表达的H型1结构。人类FUT2基因的失活突变与对幽门螺杆菌感染的敏感性降低有关。幽门螺杆菌感染了世界一半以上的人口,并引起从胃炎到胃癌的多种胃病。幽门螺杆菌粘附是成功感染建立的关键步骤。 BabA粘附素结合在胃粘蛋白上表达的Le b 和H 1型结构,而SabA结合唾液酸化的碳水化合物,介导对发炎的胃粘膜的粘附。在这项研究中,我们已使用非分泌物的动物模型Fut2-null小鼠表征糖基化分布并评估在H. pylori粘附过程中观察到的聚糖表达修饰的影响。我们已经证明在C57Bl / 6小鼠胃黏膜中末端双岩藻糖基化的聚糖结构的表达和Fut2-null小鼠在胃黏膜糖基化中显示出明显的变化,其特征在于通过凝集素和抗体染色可减少α(1,2)岩藻糖基化结构的表达并通过质谱分析进一步证实。杯状病毒病毒样颗粒不存在Fucα(1,2)依赖性结合,进一步证实了这种改变的糖基化特性。最后,使用一组具有不同粘附素表达谱的幽门螺杆菌菌株,我们证实了幽门螺杆菌对Fut2空小鼠胃黏膜的BabA依赖性黏附损害,而SabA介导的结合不受影响。

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