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Fung, I. T. H.

Publications and source records attributed to Fung, I. T. H..

2 recordsLinked to original sources

TCF-1 in CD4 T cells regulates GVHD severity and persistence

Graft-versus-host disease (GVHD) is a leading cause of mortality following allogeneic hematopoietic stem cell transplantation (allo-HSCT). Mature donor T cells in the graft mediate graft-versus-leukemia (GVL) responses against residual tumor cells, which may persist after pre-transplant conditioning regimens. Importantly, the same mature T cells also mediate GVHD. The transcription factor T Cell Factor-1 (TCF-1) is critical for T cell development in the thymus. Using a unique mouse model of allo-HSCT leading to GVHD, we investigated the role of TCF-1 in alloactivated T cell functioning and in GVHD. Here, we report that loss of TCF-1 in mature CD4 T cells reduces GVHD severity and persistence, improving survival of recipient mice. This was due to reduced proliferation, survival, and cytokine production of T cells, as well as increased exhaustion. Gene pathways involved in cytokine response, immune signaling, chemokine signaling, cell cycle, and T cell differentiation were altered by loss of TCF-1 in donor cells. Our companion paper shows that regulation of alloactivated CD4 T cells by TCF-1 differs from regulation of CD8 T cells, suggesting that TCF-1 plays a unique role in each subset. Therefore, targeting of TCF-1 or downstream signaling pathways may be an effective strategy for reducing GVHD following allo-HSCT.

immunology

TCF-1 in CD8 T cells separates GVHD from GVL

T Cell Factor-1, encoded by TCF-7, is a transcription factor that plays an essential role during T cell development and differentiation. In this manuscript we utilized a pre-clinical model provided evidence that TCF-7 is dispensable for the anti-tumor response, and that TCF-7 suppresses key transcriptional factors Eomes and T-bet and molecules responsible for peripheral CD8 T cell cytolytic function. We discovered that TCF-7 regulates NKG2D expression on naive and activated mouse CD8 T cells, and that peripheral CD8 T cells from TCF-7 cKO utilize NKG2D to clear tumor cells. We also provide evidence that TCF-7 regulates key signaling molecules, including LCK, LAT, ITK, PLC-{gamma}1, P65, ERKI/II, and JAK/STATs required for peripheral CD8 T cell persistent function. Our data transcriptomic and protein data uncovered the mechanism of how TCF-7 impacting peripheral CD8 T cell inflammatory cytokine production, CD8 T cell activation, and apoptosis. Our pre-clinical model showed that CD8 T cells from TCF-7 cKO mice did not cause GVHD, but effectively cleared primary tumor cells.

immunology