TMX1, a disulfide oxidoreductase, is necessary for T cell function through regulation of CD3ζ

Timothy Chai1, Kyle M Loh2,3, Irving L Weissman1,3

  • 1Institute for Stem Cell Biology & Regenerative Medicine, Stanford University, Stanford, CA 94305, USA.

Insights

Researchers identified TMX1 as a novel regulator of T-cell receptor (TCR) assembly. This discovery offers a potential new target for developing immunosuppressive therapies for T cell-related disorders.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Medicine

Background:

  • T cell-targeted therapies are crucial for autoimmune disorders, GVHD, and transplant rejection.
  • Current treatments often cause side effects or are ineffective, necessitating new therapeutic strategies.

Purpose of the Study:

  • To identify novel regulators of T cells using proximity labeling.
  • To investigate the role of TMX1 in T cell function and T-cell receptor (TCR) complex assembly.

Main Methods:

  • Proximity labeling with APEX2 to identify proteins interacting with CD8α.
  • CRISPR-mediated knockout of TMX1 in T cells.
  • Analysis of TCR signaling pathways (NFAT, NFκB, AP1) and TCR complex subunit expression (CD3ζ).

Main Results:

  • TMX1 was identified as a T cell regulator essential for cytotoxicity and signaling, but not proliferation.
  • TMX1 deletion reduced surface TCR expression and destabilized CD3ζ.
  • TMX1 directly interacts with CD3δ, crucial for TCR assembly and function.

Conclusions:

  • TMX1 is a novel regulator of T-cell receptor assembly, potentially through interaction with CD3δ.
  • TMX1 represents a promising new target for immunosuppressive therapies.

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