A coordinated cellular network regulates tolerance to food.

Rudnitsky, Anna; Oh, Hanna; Margolin, Maya; Dassa, Bareket; Shteinberg, Inbar; Stoler-Barak, Liat; Shulman, Ziv; Kedmi, Ranit · Nature · 2025

basic_science · Level V

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Abstract

To absorb nutrients and support commensal microorganisms, the host induces tolerogenic immune responses through peripheral regulatory T (pT<sub>reg</sub>) cells<sup>1,2</sup>. Previous studies identified conventional type 1 dendritic cells (cDC1s) as initiators of dietary pT<sub>reg</sub> cells<sup>3</sup>. However, here we report that food-specific pT<sub>reg</sub> cells are induced exclusively by the recently identified RORγt antigen-presenting cells<sup>4-8</sup> and not by conventional dendritic cells. Instead, our data suggest that pT<sub>reg</sub> cell-cDC1 interactions during homeostasis limit the expansion of food-specific CD8αβ T cells. This regulation is disrupted by infection or food poisoning, enabling dietary CD8αβ T cells to expand and acquire effector functions in response to mimicked food antigens. Unlike in typical infections, after the pathogen is cleared, dietary CD8αβ T cells do not expand in response to their corresponding dietary antigens. Thus, we propose that, in response to dietary antigens, tolerance is mediated by a circuit of dedicated antigen-presenting cells and T cells. When the host is challenged by infection, this circuit permits the transient expansion of protective effector responses without compromising the overall strategy of tolerance that ensures safe food consumption.

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