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Biology subjects

Hamilton, B. J.

Publications and source records attributed to Hamilton, B. J..

2 recordsLinked to original sources

Ileitis abolishes tolerogenic functions of the enterohepatic bile acid pool

Bile acids (BAs) regulate lipid uptake, epithelial integrity, and immune responses in the gut. Hepatocytes synthesize primary BAs, which microbiota metabolize into secondary metabolites. Together, these species form a composite pool that circulates enterohepatically between the liver and intestines. Here, we show that immunoregulatory outputs of the enterohepatic BA pools involve competition between multiple BA species for individual nuclear receptors and are dependent on intestinal health. In healthy mice, the primary BA, tauro {beta} muricholic acid (t{beta}MCA) antagonized ROR{gamma}t-mediated Th17 function in the presence of two secondary BAs (tDCA, tLCA) which activated ROR{gamma}t. Conversely, ileitis in Crohns disease patients and Tnf{delta}ARE mice depleted primary BAs by reducing the number and function of BA transporting enterocytes. In mice, ileitis driven t{beta}MCA depletion enhanced tDCA and tLCA mediated ROR{gamma}t activation and supported Th17 cell function. Replenishing t{beta}MCA in Tnf{delta}ARE mice reestablished BA dependent Th17 cell regulation. Thus, intra pool competition underpins BA immunoregulatory functions and reveals new opportunities for precision Crohns disease therapy.

immunology↗

Constitutive androstane receptor directs developing Th1 cells towards the Tr1 lineage

Constitutive androstane receptor (CAR; encoded by Nr1i3) is a nuclear xenobiotic receptor that mediates hepatic drug and bile acid metabolism. We previously identified CAR as also operating in CD4+ T helper (TH) cells, where CAR-dependent gene expression mitigates bile acid toxicity and promotes a Foxp3-IL-10+type 1 regulatory (Tr1)-like phenotype in the small intestine. Here, we show that CAR acts early and specifically during the priming of type 1 immune responses to stabilize Tr1 lineage commitment. CAR-dependent Tr1 cells formed during type 1 (Th1-associated) but not type 3 (Th17-associated) intestinal inflammation. In vitro, IL-27 upregulated CAR expression during naive TH cell activation, which contributed to Il10 induction. Single-cell analysis revealed that naive TH cells primed with IL-27 adopt a multipotent "Th1/Tr1 precursor" (THR1p) transcriptional state, which subsequently diverges into Th1 or Tr1 developmental trajectories. CAR transcriptional activity peaked in THR1p cells, upregulating Tr1 genes, including Il10, and repressing Th1 genes. Moreover, glucocorticoid receptor activation--which increases CAR expression in hepatocytes--synergized with IL-27 to augment both CAR expression and CAR-dependent Tr1 differentiation. Together, these results suggest that CAR acts in a lineage-biased manner to enforce Tr1-mediated immune tolerance during type 1 intestinal inflammation, and this pathway is amplified by glucocorticoids.

immunology↗