Multi-omic profiling reveals clonal sharing and plasticity of follicular CD4+ T cells in non-small cell lung cancer, highlighting plastic follicular subsets as targets for anti-tumor therapy.
Tumor-invaded lymph nodes (LNs) are critical but poorly studied hubs of anti-tumor immunity. Using single-cell transcriptome, clonotype, and chromatin profiling, we analyze CD4 + T cells from blood, LNs, and tumors of NSCLC patients. LNs and tumors are enriched in follicular regulatory T cells (Treg-Tfr), follicular-like conventional T cells (Tconv-Tfh and Tconv-CXCL13), and tissue-resident Tregs (Treg-Trm). These populations are predicted to share a transcriptional program of activation and tissue adaptation, driven by BATF. Additionally, these subsets show extensive LN-tumor clonal sharing, indicating recirculation, and are enriched in transcriptional signatures of tumor reactivity. Treg-Tfr cells function as progenitors bifurcating into Treg-Trm or ex-Tregs with a Tfh-like CXCL13+ effector phenotype. Follicular subsets in LNs and tumors are transcriptionally and epigenetically similar and localize in germinal-center-like niches. Overall, tumor-invaded LNs and tumors coordinate the generation and maintenance of tumor-reactive CD4+ lineages, identifying highly plastic follicular T cells as therapeutic checkpoints to reinforce anti-tumor responses. To provide additional insights into the biology of CD4 + T cells in cancer, here the authors report a multi-omics analysis of CD4 + T cells from matched blood, tumor invaded lymph nodes (LNs), and tumor tissues of patients with non-small cell lung cancer, showing that tumor-invaded LNs and tumors harbor clonally linked and plastic follicular CD4+T cell subsets.
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Boari et al. (2026) studied this question.
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