4.6 Article

TRAF3 in T Cells Restrains Negative Regulators of LAT to Promote TCR/CD28 Signaling

Journal

JOURNAL OF IMMUNOLOGY
Volume 207, Issue 1, Pages 322-332

Publisher

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.2001220

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Funding

  1. National Institutes of Health Office of Extramural Research [R01 AI123107, T32 AI007485, T32 GM007337]
  2. Holden Comprehensive Cancer Center at The University of Iowa and its National Cancer Institute Award [P30CA086862]

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TRAF3 plays a crucial role in enhancing T cell effector functions and TCR/CD28 signaling by restraining the negative regulation of LAT through inhibition of Dok1 and regulation of Brk activation, ultimately promoting Src family kinase activation. This interaction between TRAF3 and LAT sheds light on a novel mechanism for promoting TCR/CD28-mediated signaling.
The adaptor protein TNFR-associated factor 3 (TRAF3) is required for in vivo T cell effector functions and for normal TCR/CD28 signaling. TRAF3-mediated enhancement of TCR function requires engagement of both CD3 and CD28, but the molecular mechanisms underlying how TRAF3 interacts with and impacts TCR/CD28-mediated complexes to enhance their signaling remains an important knowledge gap. We investigated how TRAF3 is recruited to, and regulates, CD28 as a TCR costimulator. Direct association with known signaling motifs in CD28 was dispensable for TRAF3 recruitment; rather, TRAF3 associated with the CD28-interacting protein linker of activated T cells (LAT) in human and mouse T cells. TRAF3-LAT association required the TRAF3 TRAF-C domain and a newly identified TRAF2/3 binding motif in LAT. TRAF3 inhibited function of the LAT-associated negative regulatory protein Dok1, which is phosphorylated at an inhibitory tyrosine residue by the tyrosine kinase breast tumor kinase (Brk/PTK6). TRAF3 regulated Brk activation in T cells, limiting the association of protein tyrosine phosphatase 1B (PTP1B) with the LAT complex. In TRAF3-deficient cells, LAT complex-associated PTP1B was associated with dephosphorylation of Brk at an activating tyrosine residue, potentially reducing its ability to inhibit Dok1. Consistent with these fmdings, inhibiting PTP1B activity in TRAF3-deficient T cells rescued basal and TCR/CD28-mediated activation of Src family kinases. These results reveal a new mechanism for promotion of TCR/CD28-mediated signaling through restraint of negative regulation of LAT by TRAF3, enhancing the understanding of regulation of the TCR complex.

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