Prominent members of the human gut microbiota express endo-acting O-glycanases to initiate mucin breakdown

The thick mucus layer of the gut provides a barrier to infiltration of the underlying epithelia by both the normal microbiota and enteric pathogens. Some members of the microbiota utilise mucin glycoproteins as a nutrient source, but a detailed understanding of the mechanisms used to breakdown these...

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Veröffentlicht in:Nature communications 2020-08, Vol.11 (1), p.4017-4017, Article 4017
Hauptverfasser: Crouch, Lucy I., Liberato, Marcelo V., Urbanowicz, Paulina A., Baslé, Arnaud, Lamb, Christopher A., Stewart, Christopher J., Cooke, Katie, Doona, Mary, Needham, Stephanie, Brady, Richard R., Berrington, Janet E., Madunic, Katarina, Wuhrer, Manfred, Chater, Peter, Pearson, Jeffery P., Glowacki, Robert, Martens, Eric C., Zhang, Fuming, Linhardt, Robert J., Spencer, Daniel I. R., Bolam, David N.
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Sprache:eng
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Zusammenfassung:The thick mucus layer of the gut provides a barrier to infiltration of the underlying epithelia by both the normal microbiota and enteric pathogens. Some members of the microbiota utilise mucin glycoproteins as a nutrient source, but a detailed understanding of the mechanisms used to breakdown these complex macromolecules is lacking. Here we describe the discovery and characterisation of endo-acting enzymes from prominent mucin-degrading bacteria that target the polyLacNAc structures within oligosaccharide side chains of both animal and human mucins. These O-glycanases are part of the large and diverse glycoside hydrolase 16 (GH16) family and are often lipoproteins, indicating that they are surface located and thus likely involved in the initial step in mucin breakdown. These data provide a significant advance in our knowledge of the mechanism of mucin breakdown by the normal microbiota. Furthermore, we also demonstrate the potential use of these enzymes as tools to explore changes in O-glycan structure in a number of intestinal disease states. Epithelial cells that line the gut secrete complex glycoproteins that form a mucus layer to protect the gut wall from enteric pathogens. Here, the authors provide a comprehensive characterisation of endo-acting glycoside hydrolases expressed by mucin-degrading members of the microbiome that are able to cleave the O-glycan chains of a range of different animal and human mucins.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-17847-5