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SIRPγ modulates effector differentiation of human CD8 T Cells under suboptimal TCR stimulation: implications for immune homeostasis and autoimmunity

Morse, M.; Rodriguez, X.; DeLaRosa, E.; Rodriguez, S.; Shanil, J.; Sinha, S.

2025-07-14 immunology
10.1101/2025.07.09.663913 bioRxiv
Show abstract

BackgroundAberrant CD8 T-cell differentiation contributes to the pathogenesis of autoimmune diseases, and immune-mediated tissue damage. However, the molecular mechanisms that prevent premature effector T cell programming in humans remain incompletely defined. Signal regulatory protein gamma (SIRP{gamma}) is selectively expressed on T-cells in the human immune system. Notably, genetic variants associated with reduced SIRP{gamma} expression have been linked to increased risk of immune-mediated diseases, including type 1 diabetes and multiple sclerosis, but the contribution of SIRP{gamma} to CD8 T-cell dysregulation in these contexts remains unclear. ObjectiveTo determine how inter-individual variation in SIRP{gamma} expression influences immune homeostasis and CD8 T-cell effector programming. MethodsPeripheral blood CD8 T-cells from healthy donors were analyzed for SIRP{gamma} expression and associated differentiation phenotypes. Naive CD8 T-cells were purified and subjected to siRNA-mediated knockdown of SIRPG, followed by suboptimal TCR stimulation. Differentiation status, transcription factor expression, and effector cytokine production were measured using flow cytometry. CD47 blockade was used to assess ligand dependency. ResultsLow SIRP{gamma} expression on CD8 T-cells was associated with increased frequencies of CD27-CD45RO effector-like and CD27-CD45RO- terminally differentiated CD8 T-cells. SIRPG knockdown induced effector-like differentiation, with increased CD45RO and T-bet expression and elevated TNF-, IFN-{gamma}, and Granzyme B production. This effect was not recapitulated by CD47 blockade, suggesting a CD47-independent regulatory mechanism. ConclusionSIRP{gamma} serves as a negative regulator of CD8 T-cell effector differentiation under suboptimal stimulation. Inter-individual variation in its expression may influence susceptibility to immune dysregulation, positioning it as a potential biomarker and therapeutic target.

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