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Use of Single Chain MHC Technology to Investigate Co-agonism in Human CD8+ T Cell Activation
Published on: February 28, 2019
K12/SECTM1, an interferon-γ regulated molecule, synergizes with CD28 to costimulate human T cell proliferation
Tao Wang1, Catherine Huang, Alfonso Lopez-Coral
1Molecular and Cellular Oncogenesis Program, The Wistar Institute, 3601 Spruce St., Philadelphia, PA 19104, USA. twang@wistar.org
Insights
SECTM1 is a molecule that enhances T cell proliferation and IFN-γ production, likely through CD7. It also synergizes with anti-CD28, boosting T cell activation and IL-2 production.
Area of Science:
- Immunology
- Cell Biology
Background:
- CD7 is a costimulatory receptor on T lymphocytes and NK cells.
- SECTM1 is a proposed ligand for CD7, but its role in human T cell function is unclear.
Purpose of the Study:
- To investigate the role of SECTM1 as a ligand for CD7.
- To determine the effect of SECTM1 on human T cell proliferation and function.
- To elucidate the expression pattern and regulation of SECTM1 in human immune cells.
Main Methods:
- Used recombinant human SECTM1 (rSECTM1) to stimulate human T cells.
- Assessed T cell proliferation, IFN-γ, and IL-2 production.
- Utilized mixed lymphocyte reaction (MLR) assays with SECTM1 blockade.
- Investigated SECTM1 expression in monocytes and dendritic cells (imMoDCs).
Main Results:
- SECTM1 strongly costimulates CD4 and CD8 T cell proliferation and IFN-γ production, likely via CD7.
- SECTM1 synergizes with anti-CD28 to augment T cell functions, including IL-2 production.
- SECTM1 enhances T cell proliferation in MLR, while blockade inhibits it.
- SECTM1 is induced by IFN-γ in monocytes and imMoDCs in a STAT1-dependent manner.
Conclusions:
- SECTM1 acts as a potent costimulatory ligand for T cell activation.
- SECTM1 expression is broadly induced by IFN-γ and is synergistic with anti-CD28 signaling.
- SECTM1 plays a significant role in T cell responses, particularly in allogeneic settings.
Abstract:
CD7 is a cell-surface molecule, expressed on T lymphocytes and NK cells, which functions as a costimulatory receptor for T cell proliferation. SECTM1 has been proposed as a ligand for CD7. However, the expression pattern of this molecule in human immune cells and role in human T cell function remain unclear. In the present study, using human rSECTM1, we demonstrate that SECTM1 strongly costimulates CD4 and CD8 T cell proliferation and induces IFN-γ production, likely via a CD7-dependent mechanism. In addition, SECTM1 synergizes with suboptimal anti-CD28 to strongly augment T cell functions. We found a robust induction of IL-2 production when SECTM1 and anti-CD28 signals were present with TCR ligation. Furthermore, addition of SECTM1 into a MLR significantly enhanced proliferation of alloantigen-activated T cells, whereas blockade of SECTM1 inhibited T cell proliferation in a two-way MLR assay. Simultaneously blocking the effect of SECTM1, along with CTLA-4/Fc, diminishes two-way MLR. Finally, we demonstrated that expression of SECTM1 is not detected in monocytes and imMoDCs at the protein level. However, it is strongly induced by IFN-γ in monocytes and imMoDCs, and this induction is STAT1-dependent. These results indicate that SECTM1 is a broadly expressed, IFN-γ-inducible molecule, which functions as a potent costimulatory ligand for T cell activation and is synergistic with anti-CD28.
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