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#protein folding Open access

Crystal structure of a class II UDP-glucose—hexose-1-phosphate uridylyltransferase from Bifidobacterium longum involved in human milk oligosaccharide metabolism

Sep 2026 · bioRxiv · 0 citations · 29 references
Biology

Abstract

Infant-associated bifidobacteria utilize lacto-N-biose I (LNB) and galacto-N-biose (GNB), major components of human milk oligosaccharides and intestinal mucin, respectively, through the GNB/LNB metabolic pathway. A UDP-glucose–hexose-1-phosphate uridylyltransferase (GalT) from Bifidobacterium longum JCM 1217 (BlGalT2) catalyzes a key step in this pathway. BlGalT2 belongs to class II GalTs within the histidine triad (HIT) superfamily, a rare protein group distinct from canonical class I GalTs. Here, we determined the crystal structure of BlGalT2 at 2.25 Å resolution, providing the first three-dimensional structure of a class II GalTs. BlGalT2 is a monomeric enzyme with an architecture distinct from canonical class I GalT, comprising characteristic HIT1 and HIT2 catalytic core subdomains and an extended auxiliary domain that forms a self-contained active site. Kinetic analysis revealed a strong preference for GalNAc-1P over Gal-1P, with a 50-fold lower Km for GalNAc-1P, consistent with a hydrophobic pocket accommodating the N-acetyl group. Metal analysis and activity measurements indicated that Zn2+ is required for full activity, and structural prediction suggested its coordination by residues including the first histidine of the HIT motif. AlphaFold3 prediction and mutational analysis identified residues involved in nucleotide-sugar recognition and supported a Ping-Pong reaction mechanism involving a covalent enzyme–uridine monophosphate intermediate. These findings reveal how class II GalTs have evolved a unique structural framework and substrate specificity for N-acetylated sugars. Moreover, the structure of BlGalT2 fills the final missing gap in bifidobacterial HMO metabolism and provides molecular insight into the adaptation of bifidobacteria to host-derived glycans.

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