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Killer-cell immunoglobulin-like receptors define a potent effector program in human γδ T cells
Mahya Razmi, Yeganeh Almasi, Marilee Larrivée, Jonathan B. Angel, Alexandre Blais, Zakia Djaoud
Mahya Razmi, Yeganeh Almasi, Marilee Larrivée, Jonathan B. Angel, Alexandre Blais, Zakia Djaoud
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Research Article Hematology Immunology

Killer-cell immunoglobulin-like receptors define a potent effector program in human γδ T cells

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Abstract

Human γδ T cells are a rare but functionally diverse lymphocyte subset critical for tumor surveillance and antimicrobial immunity. Although they express NK cell–associated receptors such as killer-cell immunoglobulin-like receptors (KIRs), the relevance of KIR expression on γδ T cells remains largely unexplored. Using flow cytometry, ATAC-seq, and RNA-seq, we identified KIR expression as a marker that distinguished 2 functionally and molecularly distinct γδ T cell subsets. KIR+ γδ T cells exhibited an advanced, memory-like differentiation state characterized by heightened cytotoxicity, stable epigenetic remodeling, and a predominant IFN-γ–producing profile. In contrast, KIR– γδ T cells maintained a naive-like phenotype and preferentially produced IL-17 upon polarization. Notably, KIR+ γδ T cells were consistently observed across individuals but were significantly enriched in cytomegalovirus (CMV)-seropositive donors, suggesting that chronic antigenic stimulation could promote the emergence of KIR+ effector γδ T cells. These findings reveal a functional dichotomy in human γδ T cells defined by KIR expression, linking IFN-γ–driven cytotoxicity with KIR+ cells and IL-17 production with KIR– cells. This insight advances our understanding of γδ T cell heterogeneity and has implications for viral immunity, immune memory, and the development of γδ T cell–based immunotherapies.

Authors

Mahya Razmi, Yeganeh Almasi, Marilee Larrivée, Jonathan B. Angel, Alexandre Blais, Zakia Djaoud

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Figure 2

KIR+γδ T cells display enhanced maturity and cytotoxic potential compared with KIR– γδ T cells.

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KIR+γδ T cells display enhanced maturity and cytotoxic potential compare...
(A) Representative pseudocolor plots show the expression of the indicated markers by total γδ T cells. (B) Violin plots compare the proportions of KIR– and KIR+ cells expressing the indicated markers within Vδ1 T cells (top panel), Vδ2 T cells (middle panel), and Vδ1/2– T cells (bottom panel). Each dot represents an individual donor. The flow cytometry analysis was performed on samples from 41 individuals, except for CX3CR1 and Perforin, which were assessed in 21 and 20 individuals, respectively. Statistical significance of the difference between KIR– and KIR+ cells was assessed using the paired 2-tailed t test (**P = 0.002, ****P < 0.0008).

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