Deconvoluting TCR-dependent and -independent activation is vital for reliable Ag-specific CD4<sup>+</sup> T cell characterization by AIM assay.

Zheng, Ming Z M; Burmas, Lauren; Tan, Hyon-Xhi; Trieu, Mai-Chi; Lee, Hyun Jae; Rawlinson, Daniel; Haque, Ashraful; Kent, Stephen J et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Activation-induced marker (AIM) assays identify antigen (Ag)-specific T cells, but recent studies revealed AIM<sup>+</sup> T helper cell 17 (T<sub>H</sub>17)-like (CCR6<sup>+</sup>) and circulating T follicular helper cells (cTfh) were not associated with peptide/HLA tetramer staining. We show that CD39<sup>+</sup> regulatory T cell (T<sub>reg</sub>)-like and CD26<sup>hi</sup> T<sub>H</sub>22-like cells undergo T cell receptor (TCR)-independent activation by cytokines during Ag stimulation, leading to nonspecific up-regulation of AIM readouts. Transcriptional analysis enabled discrimination of bona fide Ag-specific T cells from cytokine-activated T<sub>reg</sub> and T<sub>H</sub>22 cells. CXCR4 down-regulation emerged as a hallmark of clonotypic expansion and TCR-dependent activation in memory CD4<sup>+</sup> T cells and cTfh. By tracking tetramer-binding cells upon Ag restimulation, we demonstrated that CXCR4-CD137<sup>+</sup> cells provided a more accurate measure of Ag-specificity than standard AIM readouts. This modified assay excluded the predominantly CCR6<sup>+</sup> cytokine-activated T cells that contributed to an average 12-fold overestimation of the Ag-specific population. Our findings provide an accurate approach to characterize genuine Ag-specific T cells.

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