Butyrate Prevents Induction of CXCL10 and Non-Canonical IRF9 Expression by Activated Human Intestinal Epithelial Cells via HDAC Inhibition

Publication date

2022-04-01

Authors

Korsten, Sandra Gabriele Patricia JohannaISNI 0000000524014762
Peracic, Laura
van Groeningen, Luka M.B.
Diks, Mara A.P.ISNI 0000000436400938
Vromans, HermanISNI 0000000393752369
Garssen, J.ORCID 0000-0002-8678-9182ISNI 0000000034097251
Willemsen, LinetteORCID 0000-0001-9882-5331ISNI 0000000391133134

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Document Type

Article
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cc_by

Abstract

Non-communicable diseases are increasing and have an underlying low-grade inflammation in common, which may affect gut health. To maintain intestinal homeostasis, unwanted epithelial activation needs to be avoided. This study compared the efficacy of butyrate, propionate and acetate to suppress IFN-γ+/−TNF-α induced intestinal epithelial activation in association with their HDAC inhibitory capacity, while studying the canonical and non-canonical STAT1 pathway. HT-29 were activated with IFN-γ+/−TNF-α and treated with short chain fatty acids (SCFAs) or histone deacetylase (HDAC) inhibitors. CXCL10 release and protein and mRNA expression of proteins involved in the STAT1 pathway were determined. All SCFAs dose-dependently inhibited CXCL10 release of the cells after activation with IFN-γ or IFN-γ+TNF-α. Butyrate was the most effective, completely preventing CXCL10 induction. Butyrate did not affect phosphorylated STAT1, nor phosphorylated NFκB p65, but inhibited IRF9 and phosphorylated JAK2 protein expression in activated cells. Additionally, butyrate inhibited CXCL10, SOCS1, JAK2 and IRF9 mRNA in activated cells. The effect of butyrate was mimicked by class I HDAC inhibitors and a general HDAC inhibitor Trichostatin A. Butyrate is the most potent inhibitor of CXCL10 release compared to other SCFAs and acts via HDAC inhibition. This causes downregulation of CXCL10, JAK2 and IRF9 genes, resulting in a decreased IRF9 protein expression which inhibits the non-canonical pathway and CXCL10 transcription.

Keywords

CXCL10, intestinal epithelial cells, short chain fatty acids, STAT1 pathway, Catalysis, Molecular Biology, Spectroscopy, Computer Science Applications, Physical and Theoretical Chemistry, Organic Chemistry, Inorganic Chemistry, SDG 3 - Good Health and Well-being

Citation

Korsten, S G P J, Peracic, L, van Groeningen, L M B, Diks, M A P, Vromans, H, Garssen, J & Willemsen, L E M 2022, 'Butyrate Prevents Induction of CXCL10 and Non-Canonical IRF9 Expression by Activated Human Intestinal Epithelial Cells via HDAC Inhibition', International Journal of Molecular Sciences, vol. 23, no. 7, 3980, pp. 1-18. https://doi.org/10.3390/ijms23073980