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Muc5ac胃粘蛋白糖基化由FUT2活性塑造,并在功能上影响幽门螺杆菌结合。

Muc5ac gastric mucin glycosylation is shaped by FUT2 activity and functionally impacts Helicobacter pylori binding.

作者信息

Magalhães Ana, Rossez Yannick, Robbe-Masselot Catherine, Maes Emmanuel, Gomes Joana, Shevtsova Anna, Bugaytsova Jeanna, Borén Thomas, Reis Celso A

机构信息

i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Rua Júlio Amaral de Carvalho, 45, 4200-135 Porto, Portugal.

Institute of Molecular Pathology and Immunology of University of Porto, Ipatimup, Rua Júlio Amaral de Carvalho, 45, 4200-135 Porto, Portugal.

出版信息

Sci Rep. 2016 May 10;6:25575. doi: 10.1038/srep25575.

Abstract

The gastrointestinal tract is lined by a thick and complex layer of mucus that protects the mucosal epithelium from biochemical and mechanical aggressions. This mucus barrier confers protection against pathogens but also serves as a binding site that supports a sheltered niche of microbial adherence. The carcinogenic bacteria Helicobacter pylori colonize the stomach through binding to host glycans present in the glycocalyx of epithelial cells and extracellular mucus. The secreted MUC5AC mucin is the main component of the gastric mucus layer, and BabA-mediated binding of H. pylori to MUC5AC confers increased risk for overt disease. In this study we unraveled the O-glycosylation profile of Muc5ac from glycoengineered mice models lacking the FUT2 enzyme and therefore mimicking a non-secretor human phenotype. Our results demonstrated that the FUT2 determines the O-glycosylation pattern of Muc5ac, with Fut2 knock-out leading to a marked decrease in α1,2-fucosylated structures and increased expression of the terminal type 1 glycan structure Lewis-a. Importantly, for the first time, we structurally validated the expression of Lewis-a in murine gastric mucosa. Finally, we demonstrated that loss of mucin FUT2-mediated fucosylation impairs gastric mucosal binding of H. pylori BabA adhesin, which is a recognized feature of pathogenicity.

摘要

胃肠道内衬有一层厚厚的、复杂的黏液层,可保护黏膜上皮免受生化和机械侵害。这种黏液屏障不仅能抵御病原体,还作为一个结合位点,支持微生物附着的隐蔽生态位。致癌细菌幽门螺杆菌通过与上皮细胞糖萼和细胞外黏液中存在的宿主聚糖结合,在胃中定殖。分泌的MUC5AC黏蛋白是胃黏液层的主要成分,幽门螺杆菌通过BabA介导与MUC5AC结合会增加患明显疾病的风险。在本研究中,我们从缺乏FUT2酶的糖工程小鼠模型中解析了Muc5ac的O-糖基化谱,该模型模拟了非分泌型人类表型。我们的结果表明,FUT2决定了Muc5ac的O-糖基化模式,Fut2基因敲除导致α1,2-岩藻糖基化结构显著减少,末端1型聚糖结构Lewis-a表达增加。重要的是,我们首次在结构上验证了Lewis-a在小鼠胃黏膜中的表达。最后,我们证明黏蛋白FUT2介导的岩藻糖基化缺失会损害幽门螺杆菌BabA黏附素与胃黏膜的结合,这是致病性的一个公认特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8db6/4861914/6d9384b220ee/srep25575-f1.jpg

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