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Updated: Nov 18, 2025

Use of Single Chain MHC Technology to Investigate Co-agonism in Human CD8+ T Cell Activation
Published on: February 28, 2019
CD4 Inhibits Helper T Cell Activation at Lower Affinity Threshold for Full-Length T Cell Receptors Than Single Chain
Deborah K Johnson1, Wyatt Magoffin1, Sheldon J Myers1
1Department of Microbiology and Molecular Biology, Brigham Young University, Provo, UT, United States.
Abstract:
CD4+ T cells are crucial for effective repression and elimination of cancer cells. Despite a paucity of CD4+ T cell receptor (TCR) clinical studies, CD4+ T cells are primed to become important therapeutics as they help circumvent tumor antigen escape and guide multifactorial immune responses. However, because CD8+ T cells directly kill tumor cells, most research has focused on the attributes of CD8+ TCRs. Less is known about how TCR affinity and CD4 expression affect CD4+ T cell activation in full length TCR (flTCR) and TCR single chain signaling (TCR-SCS) formats. Here, we generated an affinity panel of TCRs from CD4+ T cells and expressed them in flTCR and three TCR-SCS formats modeled after chimeric antigen receptors (CARs) to understand the contributions of TCR-pMHCII affinity, TCR format, and coreceptor CD4 interactions on CD4+ T cell activation. Strikingly, the coreceptor CD4 inhibited intermediate and high affinity TCR-construct activation by Lck-dependent and -independent mechanisms. These inhibition mechanisms had unique affinity thresholds dependent on the TCR format. Intracellular construct formats affected the tetramer staining for each TCR as well as IL-2 production. IL-2 production was promoted by increased TCR-pMHCII affinity and the flTCR format. Thus, CD4+ T cell therapy development should consider TCR affinity, CD4 expression, and construct format.
Insights
The coreceptor CD4 can inhibit CD4+ T cell activation, impacting cancer immunotherapies. Optimizing T cell receptor (TCR) affinity, CD4 expression, and construct format is crucial for effective cancer treatments.
Area of Science:
- Immunology
- Cancer Biology
- Biotechnology
Background:
- CD4+ T cells are vital for anti-cancer immunity, yet research often prioritizes CD8+ T cells.
- Understanding CD4+ T cell receptor (TCR) interactions is key for developing novel cancer immunotherapies.
Purpose of the Study:
- To investigate how TCR affinity, construct format, and CD4 coreceptor interactions influence CD4+ T cell activation.
- To elucidate the mechanisms by which CD4 impacts TCR signaling in different formats.
Main Methods:
- Generated an affinity panel of CD4+ T cell receptors (TCRs).
- Expressed TCRs in full-length TCR (flTCR) and three TCR single-chain signaling (TCR-SCS) formats.
- Analyzed TCR-pMHCII affinity, CD4 interactions, and T cell activation markers (e.g., IL-2 production).
Main Results:
- The CD4 coreceptor inhibited intermediate and high-affinity TCR-construct activation via Lck-dependent and -independent pathways.
- Inhibition mechanisms varied based on TCR format and affinity thresholds.
- Interleukin-2 (IL-2) production was enhanced by higher TCR-pMHCII affinity and the flTCR format.
Conclusions:
- CD4+ T cell therapy development must carefully consider TCR affinity, CD4 expression levels, and the chosen TCR construct format.
- The inhibitory role of CD4 and its dependence on TCR format and affinity present critical factors for optimizing T cell-based cancer therapies.
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