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Updated: Aug 16, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
TCF-1 regulates NKG2D expression on CD8 T cells during anti-tumor responses
Rebecca Harris1, Mahinbanu Mammadli1, Shannon Hiner1
1Department of Microbiology and Immunology, SUNY Upstate Medical University, 766 Irving Ave Weiskotten Hall Suite 2281, Syracuse, NY, 13210, USA.
Abstract:
Cancer immunotherapy relies on improving T cell effector functions against malignancies, but despite the identification of several key transcription factors (TFs), the biological functions of these TFs are not entirely understood. We developed and utilized a novel, clinically relevant murine model to dissect the functional properties of crucial T cell transcription factors during anti-tumor responses. Our data showed that the loss of TCF-1 in CD8 T cells also leads to loss of key stimulatory molecules such as CD28. Our data showed that TCF-1 suppresses surface NKG2D expression on naïve and activated CD8 T cells via key transcriptional factors Eomes and T-bet. Using both in vitro and in vivo models, we uncovered how TCF-1 regulates critical molecules responsible for peripheral CD8 T cell effector functions. Finally, our unique genetic and molecular approaches suggested that TCF-1 also differentially regulates essential kinases. These kinases, including LCK, LAT, ITK, PLC-γ1, P65, ERKI/II, and JAK/STATs, are required for peripheral CD8 T cell persistent function during alloimmunity. Overall, our molecular and bioinformatics data demonstrate the mechanism by which TCF-1 modulated several critical aspects of T cell function during CD8 T cell response to cancer. Summary Figure: TCF-1 is required for persistent function of CD8 T cells but dispensable for anti-tumor response. Here, we have utilized a novel mouse model that lacks TCF-1 specifically on CD8 T cells for an allogeneic transplant model. We uncovered a molecular mechanism of how TCF-1 regulates key signaling pathways at both transcriptomic and protein levels. These key molecules included LCK, LAT, ITK, PLC-γ1, p65, ERK I/II, and JAK/STAT signaling. Next, we showed that the lack of TCF-1 impacted phenotype, proinflammatory cytokine production, chemokine expression, and T cell activation. We provided clinical evidence for how these changes impact GVHD target organs (skin, small intestine, and liver). Finally, we provided evidence that TCF-1 regulates NKG2D expression on mouse naïve and activated CD8 T cells. We have shown that CD8 T cells from TCF-1 cKO mice mediate cytolytic functions via NKG2D.
Insights
Transcription factor TCF-1 is crucial for CD8 T cell effector functions in cancer immunotherapy, regulating key signaling pathways and molecules essential for persistent anti-tumor responses.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- T cell transcription factors (TFs) are critical for anti-tumor immunity, but their precise roles remain incompletely understood.
- Understanding TF functions is key to improving cancer immunotherapy efficacy.
Purpose of the Study:
- To dissect the functional properties of TCF-1 in CD8 T cells during anti-tumor responses using a novel murine model.
- To elucidate the molecular mechanisms by which TCF-1 regulates CD8 T cell effector functions.
Main Methods:
- Development and utilization of a novel, clinically relevant murine model lacking TCF-1 specifically in CD8 T cells.
- In vitro and in vivo experiments to analyze T cell phenotype, signaling pathways, and effector functions.
- Molecular and bioinformatics approaches to identify regulated genes and kinases.
Main Results:
- Loss of TCF-1 in CD8 T cells led to reduced expression of stimulatory molecules like CD28.
- TCF-1 suppresses NKG2D expression on CD8 T cells via Eomes and T-bet.
- TCF-1 differentially regulates essential kinases (LCK, LAT, ITK, PLC-γ1, P65, ERK, JAK/STATs) critical for T cell function.
- TCF-1 deficiency impacted T cell phenotype, cytokine production, and activation, with implications for graft-versus-host disease (GVHD).
Conclusions:
- TCF-1 is essential for the persistent function of CD8 T cells in anti-tumor immunity.
- TCF-1 regulates critical signaling pathways and molecules involved in T cell effector functions.
- TCF-1 plays a significant role in modulating CD8 T cell responses, impacting both anti-tumor immunity and alloimmunity.
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