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Cannons, J. L.

Publications and source records attributed to Cannons, J. L..

2 recordsLinked to original sources

PI3Kdelta promotes T cell effector differentiation and plasticity during chronic infection

Persistent antigen exposure in chronic infections and cancer leads to a progressive state of T cell dysfunction known as exhaustion, which represents a major barrier to effective immune control, but allows antigen-specific T cells to persist. Understanding signaling pathways that mitigate exhaustion and reinvigorate CD8+ T cell effector function is a key goal for immunotherapeutic strategies. Here, we show that an activating mutant of phosphoinositide-3-kinase {delta} (PI3K{delta}) led to a reduction of FoxO1-dependent TCF-1+ stem-like progenitor CD8+ T cells that are required for sustaining antigen-specific T cells in response to chronic viral infection. Nonetheless, mice expressing activated PI3K{delta} maintained CD8+ T cell responses that were skewed instead towards effector-like cells in a FoxO1-independent manner, associated with an amplified IL-21-STAT3 response axis and improved viral control. Activated PI3K{delta} limited TOX expression, prevented epigenetic changes associated with T cell exhaustion, and promoted effector differentiation and function from both progenitor stem-like cells and cells with an exhausted phenotype. Together, this work uncovers a key role for PI3K{delta} activation in shaping the balance and plasticity between effector function and exhaustion while promoting T cell persistence during chronic infection, providing insight for immunotherapeutic strategies.

immunology↗

A PI3Kδ-Foxo1-FasL signaling amplification loop rewires CD4+ T helper cell signaling, differentiation and epigenetic remodeling

While inputs regulating CD4+ T helper cell (Th) differentiation are well-defined, the integration of downstream signaling with transcriptional and epigenetic programs that define Th-lineage identity remain unresolved. PI3K signaling is a critical regulator of T cell function; activating mutations affecting PI3K{delta} result in an immunodeficiency with multiple T cell defects. Using mice expressing activated-PI3K{delta}, we found aberrant expression of proinflammatory Th1-signature genes under Th2-inducing conditions, both in vivo and in vitro. This dysregulation was driven by a robust PI3K{delta}-IL-2-Foxo1 signaling loop, fueling Foxo1-inactivation, loss of Th2-lineage restriction, altered chromatin accessibility and global impairment of CTCF-DNA interactions. Surprisingly, ablation of Fasl, a Foxo1-repressed gene, restored normal Th2 differentiation, TCR signaling and CTCF expression. BioID revealed Fas interactions with TCR- signaling components, which were supported by Fas-mediated potentiation of TCR signaling. Our results highlight Fas-FasL signaling as a critical intermediate in phenotypes driven by activated-PI3K{delta}, thereby linking two key pathways of immune dysregulation.

immunology↗