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March 19, 2026Communications Biology5 citationsOpen Access

A selective and augmentable butyrate-FFAR2 signal circuitry programs the cellular identity of enteroendocrine L-cells

AHAanya HirdaramaniImperial College LondonCCC. Yan ChengSouth China Agricultural UniversityAHAylin C. HanyalogluImperial College London

Key Points

  • The research aims to investigate how butyrate affects the identity and function of enteroendocrine L-cells via FFAR2 activation.
  • Utilized a human L-cell model to assess transcriptional and morphological changes.
  • Examined effects of butyrate on secretory profiles and Notch signaling in a mouse organoid model.
  • Applied the allosteric agonist AZ-1729 to evaluate its impact on PYY expression.
  • Butyrate stimulated a PYY-biased secretory profile in L-cells.
  • Increased expression of late-stage maturation markers NeuroD1 and Pax6 with butyrate.
  • AZ-1729 enhanced butyrate's effect on PYY and Pax6 upregulation.

Abstract

Abstract Activation of free fatty acid receptor 2 (FFAR2) on enteroendocrine L-cells mediates secretion of glucagon-like peptide 1 (GLP-1) and peptide YY (PYY), key regulators of central appetite control with therapeutic relevance to obesity. Here, we show that butyrate, a metabolite derived from fermentation of dietary fibre and an FFAR2 agonist, stimulates a PYY-biased profile in a human L-cell model at the transcriptional, morphological and secretory level via an FFAR2-Gαi axis that does not require dynamin-dependent receptor internalisation. We observe that butyrate modulates active Notch cascades within a Hes1-GFP mouse organoid model, which are antagonistic to secretory differentiation, and identify butyrate-dependent regulation of late-stage human enteroendocrine maturation markers, NeuroD1 and Pax6 . Butyrate-mediated upregulation of Pyy and Pax6 is enhanced by the FFAR2-selective Gαi biased allosteric agonist AZ-1729. Our study reveals functions of spatiotemporally regulated butyrate-activated FFAR2 signalling mechanisms that could be pharmacologically amplified to fine-tune L-cell populations in the human colon.

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Cite This Study

Hirdaramani et al. (2026) studied this question.

synapsesocial.com/papers/69bb92ae496e729e62980295https://doi.org/10.1038/s42003-026-09830-5
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