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Updated: May 2, 2026

Generation of Human Chimeric Antigen Receptor Regulatory T Cells
Published on: January 3, 2025
Tyrosine 201 of the cytoplasmic tail of CTLA-4 critically affects T regulatory cell suppressive function
Melanie Stumpf1, Xuyu Zhou, Shunsuke Chikuma
1Diabetes Center and the Department of Medicine, University of California, San Francisco, CA, USA; Barbara Davis Center for Childhood Diabetes, University of Colorado School of Medicine, Aurora, CO, USA.
Abstract:
Cytotoxic T lymphocyte antigen-4 (CTLA-4) is a major negative regulatory molecule for T-cell activation with a complex biology and function. CTLA-4 is known to regulate homeostatic lymphoproliferation as well as tolerance induction and has been proposed to be an important effector molecule by which Treg cells suppress immunity. The immunoregulatory properties of CTLA-4 are primarily mediated by competition with the costimulator CD28 for ligand binding but also by delivering negative signals to T cells through its cytoplasmic tail. In this study, we addressed the effect of directly mutating the amino acid residue, Tyrosine 201 (Tyr201), of the intracellular domain of CTLA-4 in situ and its implications in T-cell function in the context of autoimmunity. Therefore, a novel CTLA-4 knock-in mouse (Y201V KI) was generated, in which Tyr201 was replaced by a valine that could not be phosphorylated. Mice expressing the CTLA-4 mutant molecule were generally healthy and did not show signs of disruption of T-cell homeostasis under steady-state conditions seen in CTLA-4 deficient mice. However, T cells isolated from Y201V KI mice expressed higher levels of CTLA-4 on the cell surface and displayed a Th2-biased phenotype following TCR stimulation. Furthermore, Y201V KI mice developed exacerbated disease as compared to wild-type upon antigen-specific T-cell activation in an in vivo model of EAE. Importantly, the Y201V mutation resulted in impaired suppressive activity of Treg cells while T effector function remained intact. These data suggest that effects associated with and mediated through Tyr201 of CTLA-4s intracellular domain are critical for Treg-cell function.
Insights
Altering Cytotoxic T lymphocyte antigen-4 (CTLA-4) by mutating Tyrosine 201 impairs regulatory T cell function and exacerbates autoimmune disease. This highlights Tyr201
Area of Science:
- Immunology
- Molecular Biology
- Autoimmunity
Background:
- Cytotoxic T lymphocyte antigen-4 (CTLA-4) is a key negative regulator of T-cell activation and immune tolerance.
- CTLA-4 mediates T-cell suppression through ligand competition with CD28 and intracellular signaling.
- The role of specific intracellular residues, like Tyrosine 201 (Tyr201), in CTLA-4 function remains incompletely understood.
Purpose of the Study:
- To investigate the in situ functional consequences of mutating CTLA-4's Tyr201 residue.
- To determine the impact of Tyr201 phosphorylation on T-cell function and autoimmunity.
Main Methods:
- Generation of a novel CTLA-4 knock-in mouse model (Y201V KI) where Tyr201 is replaced by non-phosphorylatable valine.
- Analysis of T-cell phenotype, homeostasis, and suppressive function in Y201V KI mice.
- Assessment of disease severity in an in vivo model of experimental autoimmune encephalomyelitis (EAE).
Main Results:
- Y201V KI mice exhibit normal T-cell homeostasis but display increased surface CTLA-4 and a Th2-biased T-cell phenotype.
- Y201V KI mice show exacerbated EAE disease severity compared to wild-type controls.
- The Tyr201 mutation impairs regulatory T cell (Treg) suppressive activity while T effector function is preserved.
Conclusions:
- The phosphorylation of CTLA-4 at Tyr201 is critical for effective Treg cell suppressive function.
- Disruption of Tyr201-mediated signaling in CTLA-4 exacerbates autoimmune responses.
- Targeting CTLA-4 intracellular signaling pathways may offer therapeutic strategies for autoimmune diseases.
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