Binding of Akkermansia muciniphila to mucin is O-glycan specific
The intestinal anaerobic bacterium Akkermansia muciniphila is specialized in the degradation of mucins, which are heavily O -glycosylated proteins that constitute the major components of the mucus lining the intestine. Despite that adhesion to mucins is considered critical for the persistence of A....
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Veröffentlicht in: | Nature communications 2024-05, Vol.15 (1), p.4582-10, Article 4582 |
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Zusammenfassung: | The intestinal anaerobic bacterium
Akkermansia muciniphila
is specialized in the degradation of mucins, which are heavily
O
-glycosylated proteins that constitute the major components of the mucus lining the intestine. Despite that adhesion to mucins is considered critical for the persistence of
A. muciniphila
in the human intestinal tract, our knowledge of how this intestinal symbiont recognizes and binds to mucins is still limited. Here, we first show that the mucin-binding properties of
A. muciniphila
are independent of environmental oxygen concentrations and not abolished by pasteurization. We then dissected the mucin-binding properties of pasteurized
A. muciniphila
by use of a recently developed cell-based mucin array that enables display of the tandem repeats of human mucins with distinct
O
-glycan patterns and structures. We found that
A. muciniphila
recognizes the unsialylated LacNAc (Galβ1-4GlcNAcβ1-R) disaccharide selectively on core2 and core3
O
-glycans. This disaccharide epitope is abundantly found on human colonic mucins capped by sialic acids, and we demonstrated that endogenous
A. muciniphila
neuraminidase activity can uncover the epitope and promote binding. In summary, our study provides insights into the mucin-binding properties important for colonization of a key mucin-foraging bacterium.
Intestinal mucus consists of densely O-glycosylated mucins, serving as a nutrient source for bacteria. Elzinga et al. show that mucin-degrading
Akkermansia muciniphila
selectively binds to O-glycan structures found on human colonic mucins. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-024-48770-8 |