Foundry120 atlas

Gut metagenome of human and mouse stool-derived microbial communities with 4-GBA treatment

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Dataset overview

Participants None
Samples 16
Reuse readiness 5.3/10 evidence-backed score

A 4-guanidinobutanoic acid-SLC36A1 axis drives a microbiota‒host feedback loop to regulate intestinal homeostasis.

Abstract

The role of gut microbiota‒derived metabolites in regulating the intestinal mucosal barrier remains poorly defined. Here, we identified 4-guanidinobutanoic acid (4-GBA), produced by <i>Bacteroides stercorirosoris</i>, as a critical regulator of intestinal homeostasis. Using untargeted metabolomics, organoid co-cultures, mouse models, and single-cell RNA sequencing, we demonstrated that 4-GBA enhances intestinal stem cells (ISCs) function and goblet cell differentiation. This promotes <i>Akkermansia muciniphila</i> enrichment through mucus-dependent niche expansion, establishing a microbiota‒host feedback loop. Mechanistically, 4-GBA upregulates the proton-coupled amino acid transporter SLC36A1 and activates the Hedgehog signaling pathway to drive epithelial reprogramming. Clinically, SLC36A1 expression inversely correlates with ulcerative colitis (UC) severity in human samples. Furthermore, the SLC36A1 agonist sarcosine enhances barrier homeostasis and attenuates colitis in mice, highlighting the diagnostic and therapeutic potential of this axis in UC. Our findings reveal a novel microbiome-host axis through which a microbial metabolite modulates epithelial function and microbial ecology, offering a potential therapeutic strategy targeting microbiota-epithelial crosstalk for UC management.

Study facts

Organism
Platform
Illumina MiSeq
Age group
Disease groups
Anatomical sites

Data availability

Specific data assets have not been resolved from the source yet — see the source repository below for the full file listing.

Strengths & limitations for reuse

Strengths

  • Raw reads are advertised
  • Sample counts are documented

Limitations

  • Not documented: feature/otu tables are advertised
  • Not documented: taxonomic tables are advertised
  • Not documented: participant counts are documented
Extraction evidence & provenance

Each extracted field is shown with the source excerpt and location used to resolve it.

Assay

FieldValueEvidence
assay.platform Illumina MiSeq from source
ENA instrument_model=Illumina MiSeq

Section ENA study report, offset —

assay.primers_reported True
amplified with the primers 515F/806R

Section Materials and methods—16S rRNA gene sequencing, offset 250

assay.sequencing_type amplicon_16s
16S rRNA gene sequencing

Section Materials and methods—16S rRNA gene sequencing, offset —

assay.target_region V3–V4
The V3–V4 regions of the 16S rRNA gene were amplified

Section Materials and methods—16S rRNA gene sequencing, offset 190

Cohort

FieldValueEvidence
cohort.treatment_exposure_documented True
with 4-GBA treatment

Section study description, offset 80

Data_Assets

FieldValueEvidence
data_assets.open_access True
"license": "cc by"

Section publication metadata, offset —

data_assets.qc_or_negative_controls_reported True
Fecal genomic DNA was extracted ... and quality-checked by NanoDrop 2000 spectrophotometry ... and agarose gel electrophoresis

Section Materials and methods—16S rRNA gene sequencing, offset 120

data_assets.raw_reads True
Raw sequencing reads were deposited in the NCBI BioProject databases under the accession numbers PRJNA1298487 and PRJNA1298490.

Section Materials and methods—16S rRNA gene sequencing, offset 520

Specimens

FieldValueEvidence
specimens.number_of_samples 16 from source
ENA sample_count=16

Section ENA study report, offset —

specimens.sample_type stool
human and mouse stool-derived microbial communities

Section study description, offset 45