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SIRPγ limits effector differentiation of human CD8 T cells in response to subthreshold TCR-signaling

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

ImmunoHorizonsLast synced 6/23/2026Status: syncedPMID: 42323887 pmidDOI: 10.1093/immhor/vlag027

Abstract Signal regulatory protein gamma (SIRPγ) is a T cell–specific surface receptor in the human immune system with previously undefined function in human CD8 T cell differentiation. We report that SIRPγ expression varies substantially across individuals and stratifies CD8 T cell differentiation states. Individuals with low SIRPγ expression exhibit an increased frequency of CD27CD45ROeffector-like and CD27CD45ROterminally differentiated CD8 T cells, while high expressors retain a predominance of naïve and central memory cells. To investigate the functional role of SIRPγ, we performed small interfering RNA–mediated knockdown in naïve human CD8 T cells. Under suboptimal TCR stimulation,knockdown drove robust effector-like differentiation marked by increased CD45RO expression, T-bet upregulation, and enhanced production of TNF-α, IFN-γ, and granzyme B. This phenotype was not recapitulated by CD47 blockade, indicating that SIRPγ modulates differentiation through a CD47-independent mechanism. These findings identify SIRPγ as a negative regulator of CD8 T cell effector programming under limiting stimulatory conditions. Interindividual variability in SIRPγ expression may influence immune homeostasis and susceptibility to immunopathology, highlighting SIRPγ as a potential therapeutic target in settings of dysregulated T cell responses.

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