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.

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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