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Tox induces T cell IL-10 production in a BATF-dependent manner. | LitMetric

AI Article Synopsis

  • Tox is a high mobility group (HMG)-Box transcription factor vital for T cell development in the thymus and is also highly expressed in activated CD4 and CD8 T cells in cancer and autoimmune diseases.
  • Tox enhances the differentiation of Th2 and T regulatory (Treg) cells and is shown to influence various Th subtypes, promoting cell activation and reducing inflammation.
  • The study suggests that Tox works with other transcription factors to regulate genes that help T cells interact with dendritic cells and produce IL-10, aiding in inflammation resolution.

Article Abstract

Tox is a member of the high mobility group (HMG)-Box transcription factors and plays important roles in thymic T cell development. Outside of the thymus, however, Tox is also highly expressed by CD8 and CD4 T cells in various states of activation and in settings of cancer and autoimmune disease. In CD4 T cells, Tox has been primarily studied in T follicular helper (TFH) cells where it, along with Tox2, promotes TFH differentiation by regulating key TFH-associated genes and suppressing CD4 cytotoxic T cell differentiation. However, the role of Tox in other T helper (Th) cell subtypes is less clear. Here, we show that Tox is expressed in several physiologically-activated Th subtypes and its ectopic expression enhances the differentiation of Th2 and T regulatory (Treg) cells. Tox overexpression in unpolarized Th cells also induced the expression of several genes involved in cell activation (), cellular trafficking () and suppressing inflammation () across multiple Th subtypes. We found that Tox binds the regulatory regions of these genes along with the transcription factors BATF, IRF4, and JunB and that Tox-induced expression of IL-10, but not PD-1, is BATF-dependent. Based on these data, we propose a model where Tox regulates Th cell chemotactic genes involved in facilitating dendritic cell-T cell interactions and aids in the resolution or prevention of inflammation through the production of IL-10.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10694202PMC
http://dx.doi.org/10.3389/fimmu.2023.1275423DOI Listing

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