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April 26, 2026Nature Microbiology3 citationsOpen Access

Cayman enables large-scale analysis of gut microbiome carbohydrate-active enzyme repertoires

QDQuinten R. DucarmonNKNicolai KarcherSGSamir Giri

Key Points

  • The aim is to develop a CAZyme profiler for examining carbohydrate-active enzyme profiles in gut microbiomes.
  • Developed Cayman for CAZyme profiling in metagenomes.
  • Surveyed 107,683 gut microbial genomes and 3,960 metagenomes from varying income settings.
  • Analyzed CAZyme richness and substrate preferences in colorectal cancer patients' metagenomes.
  • Identified diverse mucin-foraging bacteria including Hungatella and Eisenbergiella.
  • Low- and middle-income setting metagenomes showed enrichment in fibre-degrading CAZymes, whereas high-income settings had greater CAZyme richness.
  • Colorectal cancer metagenomes revealed depletion of fibre-targeting CAZymes and enrichment in glycosaminoglycan-targeting CAZymes.

Abstract

Abstract Carbohydrate-active enzymes (CAZymes) are crucial for digesting glycans, but tools for CAZyme profiling and interpretation of substrate preferences in microbiome data are lacking. Here we develop a CAZyme profiler called Cayman (Carbohydrate Active Enzymes Profiling of Metagenomes) and a hierarchical substrate annotation scheme for use with genomic or shotgun metagenomic datasets. Using these tools, we systematically surveyed CAZymes in human gut microorganisms ( n = 107,683 genomes) and identified several putative mucin-foraging bacteria, including Hungatella and Eisenbergiella species, which were confirmed experimentally. We compared CAZymes in gut metagenomes ( n = 3,960) from high-income settings versus low- and middle-income settings and found that low- and middle-income setting metagenomes are enriched in fibre-degrading CAZymes, while CAZyme richness is generally higher in high-income setting metagenomes. Additional analysis ( n = 1,998) indicated that metagenomes of individuals with colorectal cancer are depleted in fibre-targeting and enriched in glycosaminoglycan-targeting CAZymes. Finally, we inferred CAZyme substrates from genomic co-localization of CAZyme domains. Cayman is broadly applicable and freely available from https://github.com/zellerlab/cayman .

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Cite This Study

Ducarmon et al. (2026) studied this question.

synapsesocial.com/papers/69edad6b4a46254e215b515bhttps://doi.org/10.1038/s41564-026-02318-2
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