Interferon subverts an AHR-JUN axis to promote CXCL13<sup>+</sup> T cells in lupus.

Law, Calvin; Wacleche, Vanessa Sue; Cao, Ye; Pillai, Arundhati; Sowerby, John; Hancock, Brandon; Horisberger, Alice; Bracero, Sabrina et al. · Nature · 2024

basic_science · Level V

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Abstract

Systemic lupus erythematosus (SLE) is prototypical autoimmune disease driven by pathological T cell-B cell interactions<sup>1,2</sup>. Expansion of T follicular helper (T<sub>FH</sub>) and T peripheral helper (T<sub>PH</sub>) cells, two T cell populations that provide help to B cells, is a prominent feature of SLE<sup>3,4</sup>. Human T<sub>FH</sub> and T<sub>PH</sub> cells characteristically produce high levels of the B cell chemoattractant CXCL13 (refs. <sup>5,6</sup>), yet regulation of T cell CXCL13 production and the relationship between CXCL13<sup>+</sup> T cells and other T cell states remains unclear. Here, we identify an imbalance in CD4<sup>+</sup> T cell phenotypes in patients with SLE, with expansion of PD-1<sup>+</sup>/ICOS<sup>+</sup> CXCL13<sup>+</sup> T cells and reduction of CD96<sup>hi</sup> IL-22<sup>+</sup> T cells. Using CRISPR screens, we identify the aryl hydrocarbon receptor (AHR) as a potent negative regulator of CXCL13 production by human CD4<sup>+</sup> T cells. Transcriptomic, epigenetic and functional studies demonstrate that AHR coordinates with AP-1 family member JUN to prevent CXCL13<sup>+</sup> T<sub>PH</sub>/T<sub>FH</sub> cell differentiation and promote an IL-22<sup>+</sup> phenotype. Type I interferon, a pathogenic driver of SLE<sup>7</sup>, opposes AHR and JUN to promote T cell production of CXCL13. These results place CXCL13<sup>+</sup> T<sub>PH</sub>/T<sub>FH</sub> cells on a polarization axis opposite from T helper 22 (T<sub>H</sub>22) cells and reveal AHR, JUN and interferon as key regulators of these divergent T cell states.

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