The ascorbate-Tet axis functions as a checkpoint regulator for Tn quiescence, ensuring peripheral tolerance, particularly during aging.
Abstract
T-cell peripheral tolerance is crucial for maintaining immune homeostasis and preventing autoimmunity, which is characterized by limited response of conventional T cells to antigen stimulation. The mechanisms controlling this process remain to be fully elucidated.
To investigate the role of nutritional factors and related epigenetic mechanisms, we conducted in vivo CRISPR screening and identified ascorbate transporter Slc23a2.
Ablation of Slc23a2 in T cells decreases intracellular ascorbate levels, leading to DNA hypermethylation in specific regions. This results in increased differentiation of naive T (Tn) cells into effector and memory T cells, accompanied by low-grade autoimmune inflammation, which is comparable to ascorbate deprivation, Tet dioxygenase deletion, and aged T cells. Mechanistically, Slc23a2 through ascorbate activates Tet methylcytosine dioxygenases to restrict Tn cell activation and differentiation into effector or memory T cells by attenuating TCR signaling, reducing helper T-cell determinants, and enhancing Tcf1 expression and chromatin binding. Tcf1 ablation partially mimics Slc23a2 deficiency, while Tcf1 overexpression suppresses its effect.
Therefore, the ascorbate-Tet axis functions as a checkpoint regulator for Tn quiescence, ensuring peripheral tolerance, particularly during aging.
N/A
Immune Response Regulation: Cellular Mechanisms (IRC)
The study depicts an epigenetic polarity governing Treg-mediated immune tolerance, highlighting a fundamental asymmetry at the epigenetic level that differentially regulates Treg and conventional T cells.
Wenjun Huang, Yongqiang Feng, Jun Li et al.· Journal of Immunology· 0 citations
It is shown that the histone variant H3.3 is enriched in tissue Tregs compared to splenic Tregs and its chaperone Hira is a critical regulator of Treg effector program, revealing a previously unreported epigenetic mechanism critical for Treg effector differentiation and function.
Pathogenic T helper 17 (pTh17) cells are a subset of CD4+ T cells driving autoimmune diseases including multiple sclerosis (MS).
To identify transporters controlling pTh17 cells, we conducted an in vivo shRNA-based forward genetic screen using the experimental autoimmune encephalomyelitis (EAE) model of MS...
Lucile Noyer, Liwei Wang, Miki Jishage et al.· Journal of Immunology· 0 citations
It is shown that TIF1γ-deficient Treg cells lose Foxp3 expression and acquire effector phenotypes in a cell-intrinsic manner upon inflammatory challenge, and TIF1γ is identified as a critical regulator of Treg cell stability that restrains β-catenin–TCF7 signaling.
Eugenio Contreras-Castillo, Jesús Daniel Zambrano-Romero, H. N. Núñez-Martínez et al.· Nature Immunology· 1 citation
Long-lived T cell immunity can protect against endemic pathogens that result in iterative challenge to the host, but how such repeated activation of T cells impacts on the molecular mechanisms governing memory potential remains largely unclear. Here, we assessed the role of de novo epigenetic programs in shaping...
Yun Liu, Ben Youngblood, Caitlin C. Zebley et al.· Journal of Immunology· 0 citations