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Heurtebise-Chretien, S.

Publications and source records attributed to Heurtebise-Chretien, S..

2 recordsLinked to original sources

Epigenetic control of CD8+ T cell tissue homing and tissue resident memory T cell precursors by the histone methyltransferase SUV39H1

Activation of CD8+ T cells leads to the differentiation of short-lived terminal effectors and memory precursors. Some of these memory precursors remain in lymphoid organs and become long-lived central memory T cells (TCM), while others home to non-lymphoid peripheral tissues early after antigen recognition and differentiate into tissue resident memory T cells (TRM). The early stages of memory precursor tissue homing and TRM differentiation remain poorly understood. We show here that at steady state, during space-induced "homeostatic" expansion, and after flu infection, deletion of the histone 3-lysine 9 methyltransferase SUV39H1 in CD8+ T cells, increases the homing to non-lymphoid tissues (including liver, lungs, gut and skin). SUV39H1-defective cells in tissues express CD49d and differentiate into CD69+/CD103-TRM after adoptive transfer or Flu infection. SUV39H1-defective T cells that accumulate in lungs are fully functional in both Flu re-infection and lung tumor models. We conclude that SUV39H1 restrains CD8+ T cell tissue homing and TRM differentiation in WT mice. These results should encourage the use of SUV39H1-depletion in the context of adoptive T cell therapies to enhance tissue homing, thereby optimizing the efficiency of target cell eradication and long-term protection in the context of infection and cancer.

immunology↗

Homeostatic activation of Aryl Hydrocarbon Receptor by dietary ligands dampens cutaneous allergic responses by controlling Langerhans cells migration

Dietary compounds can affect the development of inflammatory responses at distant sites. However, mechanisms involved remain incompletely understood. Here we addressed the influence on allergic responses of dietary agonists of Aryl Hydrocarbon Receptor (AhR). In cutaneous papain-induced allergy, we found that lack of dietary AhR ligands exacerbates allergic responses. This phenomenon was tissue-specific, as airway allergy was unaffected by the diet. In addition, lack of dietary AhR ligands worsened asthma-like allergy in a model of atopic march. Mice deprived of dietary AhR ligands displayed impaired Langerhans cell migration, leading to exaggerated T cell responses. Mechanistically, dietary AhR ligands regulated the inflammatory profile of epidermal cells, without affecting barrier function. In particular, we evidenced TGF-{beta} hyperproduction in the skin of mice deprived of dietary AhR ligands, explaining Langerhans cell retention. Our work identifies an essential role for homeostatic activation of AhR by dietary ligands in the dampening of cutaneous allergic responses and uncovers the importance of the gutskin axis in the development of allergic diseases.

immunology↗