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Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries
Published on: January 22, 2019
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.
Abstract:
T cell-targeted therapies are commonly used to manage T cell hyperactivity in autoimmune disorders, graft-versus-host diseases (GVHD), and transplant rejections. However, many patients experience significant side effects or inadequate responses to current treatments, highlighting the urgent need for alternative strategies. In this study, we searched for regulators of T cells through proximity labeling with APEX2 to detect proteins interacting with CD8α, a coreceptor of the T-cell receptor (TCR). This screen revealed TMX1, an ER resident transmembrane disulfide oxidoreductase, is essential for T cell cytotoxicity and NFAT, NFκB, and AP1 signaling but not cell proliferation. TMX1 deletion decreases surface TCR expression and destabilizes CD3ζ, a subunit of TCR complex; however, overexpression of CD3ζ rescues the phenotype, suggesting that TMX1 is not required for CD3ζ function. Mechanistically, TMX1 was found to directly engage the CxxC motif of CD3δ, which has been reported to be essential for proper TCR assembly and function. We hypothesize that the loss of TMX1 interaction with CD3δ leads to impaired TCR assembly and subsequent CD3ζ destabilization. These findings identify TMX1 as a novel regulator of T-cell receptor assembly and a potential target for immunosuppressive therapy.
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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