ZERO WORLD RESEARCHLiterature database on amino acids & organic acids

<i>Akkermansia muciniphila</i>'s <i>nifJ</i> gene enhances colostrum sIgA synthesis by branched-chain amino acid degradation to branched short-chain fatty acids.

Gut microbes2026Wu D, Li F, Xiong W, et al.
Study designOther primary literature
SubjectAnimal

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Study design
Other primary literature
Subject
Animal
Publication year
2026
Source
doi.org
Abstract display
Shown here
Publication status
Active
Status checked
17 Aug 2026
Collected
3 Aug 2026
Freshness
Current
Review stage
Automated
Record status
Published

Abstract

Colostrum secretory immunoglobulin A (sIgA) confers the first immune defense line for neonates to adapt to the external environment, while gut microbes have received attention for their high reactivity with sIgA. Here, we report that high levels of sIgA in sow colostrum are associated with the enrichment of Akkermansia muciniphila and branched-chain amino acid (BCAA) metabolism in the intestine. Mechanistically, we demonstrate through mice models that A. muciniphila-derived nifJ mediates BCAA degradation to branched short-chain fatty acids, which further enhance transforming growth factor-β (TGF-β) and C-C motif chemokine ligand 28 (CCL28) expression in mammary tissues through the G protein-coupled receptor pathway, ultimately increasing sIgA content in colostrum. These findings establish a mechanistic link between the maternal gut microbiota and offspring immune development, highlighting the specific functional localization of the nifJ gene of A. muciniphila.

MeSH

AkkermansiaAmino Acids, Branched-ChainAnimalsBacterial ProteinsColostrumFatty Acids, VolatileFemaleGastrointestinal MicrobiomeImmunoglobulin A, SecretoryMicePregnancyTransforming Growth Factor beta

DOI 10.1080/19490976.2026.2620128

PMID 41611668

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