TY - JOUR
T1 - Discovery of a secreted Bacteroides fragilis mucinase that cleaves mucins with bis-T O-glycans through a carbohydrate binding module-dependent mechanism
AU - Narimatsu, Yoshiki
AU - Pleguezuelos-Manzano, Cayetano
AU - Hornikx, Daniel
AU - Goerdeler, Felix
AU - Jaroentomeechai, Thapakorn
AU - Flores, Katia
AU - Narimatsu, Sanae
AU - Boot, Charelle
AU - Hansen, Lars
AU - Durbesson, Fabien
AU - Vincentelli, Renaud
AU - Comstock, Laurie
AU - Clevers, Hans
AU - Taleb, Victor
AU - Corzana, Francisco
AU - Henrissat, Bernard
AU - Clausen, Henrik
AU - Hurtado-Guerrero, Ramon
AU - Büll, Christian
N1 - Publisher Copyright:
© 2026 The Author(s). Published with license by Taylor & Francis Group, LLC.
PY - 2026
Y1 - 2026
N2 - Degradation of mucins at the host–microbial mucus interphase involves glycosidases that release monosaccharides from O-glycans and mucinases that cleave the mucin protein backbone. Mucinases recognize and cleave peptide bonds at specific sequence motifs with varying O-glycan structures required and/or permissible. Mucinases that digest mucins with intact O-glycans can potentially destroy the protective mucus, while mucinases that only digest mucins with partially degraded O-glycans may serve at a later stage of nutrient sourcing from mucins. Here, we discovered nine CBM-bearing M60-like mucinases across gut commensals and opportunists, including a conserved Bacteroides fragilis mucinase denoted HC11. We also investigated the previously described Bacteroides thetaiotaomicron mucinase BT4244, which together delineates two functional classes with distinct preferences: BT4244 for bis-Tn (GalNAcα1-O-Ser/Thr) and HC11 for bis-T (Galβ1-3GalNAcα1-O-Ser/Thr) O-glycans. Both mucinases harbor carbohydrate-binding modules (CBM32) that bind their cognate O-glycan motifs and are required–together with the catalytic domains–for efficient cleavage of extended mucin domains, which is consistent with cooperative engagement, but are not required for the cleavage of short glycopeptides. We show B. fragilis strains secrete HC11 and degrade mucins only after the removal of sialic acids. Together, these findings expand the mucinase repertoire by nine enzymes spanning commensals and opportunists, demonstrate that CBM32 domains are essential for efficient cleavage of extended mucin substrates likely by promoting multivalent engagement and substrate positioning, and nominateidentify CBM–catalytic cooperation as a mechanism and intervention point for controlling mucus turnover and barrier integrity.
AB - Degradation of mucins at the host–microbial mucus interphase involves glycosidases that release monosaccharides from O-glycans and mucinases that cleave the mucin protein backbone. Mucinases recognize and cleave peptide bonds at specific sequence motifs with varying O-glycan structures required and/or permissible. Mucinases that digest mucins with intact O-glycans can potentially destroy the protective mucus, while mucinases that only digest mucins with partially degraded O-glycans may serve at a later stage of nutrient sourcing from mucins. Here, we discovered nine CBM-bearing M60-like mucinases across gut commensals and opportunists, including a conserved Bacteroides fragilis mucinase denoted HC11. We also investigated the previously described Bacteroides thetaiotaomicron mucinase BT4244, which together delineates two functional classes with distinct preferences: BT4244 for bis-Tn (GalNAcα1-O-Ser/Thr) and HC11 for bis-T (Galβ1-3GalNAcα1-O-Ser/Thr) O-glycans. Both mucinases harbor carbohydrate-binding modules (CBM32) that bind their cognate O-glycan motifs and are required–together with the catalytic domains–for efficient cleavage of extended mucin domains, which is consistent with cooperative engagement, but are not required for the cleavage of short glycopeptides. We show B. fragilis strains secrete HC11 and degrade mucins only after the removal of sialic acids. Together, these findings expand the mucinase repertoire by nine enzymes spanning commensals and opportunists, demonstrate that CBM32 domains are essential for efficient cleavage of extended mucin substrates likely by promoting multivalent engagement and substrate positioning, and nominateidentify CBM–catalytic cooperation as a mechanism and intervention point for controlling mucus turnover and barrier integrity.
KW - M60-like peptidases
KW - Mucinase
KW - O-glycans
KW - bacteroides
KW - microbiome
KW - mucins
KW - Bacteroides fragilis/enzymology
KW - Carbohydrate Binding Modules
KW - Humans
KW - Gastrointestinal Microbiome
KW - Substrate Specificity
KW - Polysaccharides/metabolism
KW - Bacterial Proteins/metabolism
KW - Mucins/metabolism
KW - Glycoside Hydrolases/metabolism
UR - https://www.scopus.com/pages/publications/105033395529
U2 - 10.1080/19490976.2026.2644983
DO - 10.1080/19490976.2026.2644983
M3 - Article
C2 - 41856961
AN - SCOPUS:105033395529
SN - 1949-0976
VL - 18
JO - Gut microbes
JF - Gut microbes
IS - 1
M1 - 2644983
ER -