RESEARCH
【Publication】bifidoAnnotator: fine-grained annotation of bifidobacterial glycoside hydrolases for human milk glycan utilization
August 13, 2026
Credits: WPI-Bio2Q
Fig. 1. bifDB curation and workflow overview.
Credits: M Gen 12, 001702 (2026);
Co-authored by Bio2Q researchers and published in Microbial Genomics, this study presents “bifidoAnnotator,” a tool designed for the highly accurate analysis of bifidobacterial enzymes involved in human milk glycan (HMG) metabolism. The researchers constructed a curated proprietary database of over 22,000 enzymes, achieving precise functional annotation an order of magnitude faster than conventional methods. These findings help elucidate strain-level functional differences, contributing to research on the infant gut microbiome and the development of probiotics.
| Title | bifidoAnnotator: fine-grained annotation of bifidobacterial glycoside hydrolases for human milk glycan utilization |
|---|---|
| Authors | Nicholas Pucci 1, Daniel R Mende 1, 2 |
| Short Description |
This study, co-authored by researchers from both Bio2Q and Amsterdam UMC, introduces bifidoAnnotator, a bioinformatics tool that enables fine-grained annotation of bifidobacterial enzymes involved in human milk glycan (HMG) metabolism. Bifidobacteria play a central role in establishing the infant gut microbiome by breaking down complex glycans found in human milk, yet existing annotation tools typically classify glycoside hydrolases only at the family level, limiting their ability to distinguish enzymes with different substrate specificities and metabolic functions. Here, these researchers developed a curated reference database containing more than 22,000 bifidobacterial glycoside hydrolases organized into 108 functional clusters and combined it with a hierarchical annotation framework that identifies specific enzyme variants and associated transport proteins. Benchmarking against established annotation tools showed that bifidoAnnotator achieved superior precision while maintaining perfect recall, and completed analyses an order of magnitude faster than the most accurate existing methods. Applying the tool to infant gut microbiome datasets further revealed species- and strain-level differences in human milk glycan utilization that were not captured by conventional family-level annotations. By providing accurate, high-resolution functional annotation at scale, this study establishes bifidoAnnotator as a valuable resource for comparative microbiome research, investigations of early-life microbial ecology, and the identification of bifidobacterial strains with probiotic potential. |
| DOI | 10.1099/mgen.0.001702 |
| Journal | Microbial Genomics |
| Vol/Num/Page |
12(4):001702
|
| Publication Date | April, 2026 |
Affiliations
1 Department of Medical Microbiology & Infectious Diseases, Amsterdam UMC, Location AMC at University of Amsterdam, 1105 AZ, Amsterdam, The Netherlands.
2 Human Biology-Microbiome-Quantum Research Center (WPI-Bio2Q), Keio University, 108-8345, Tokyo, Japan.
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