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Inhibiting CXCR4 Attenuates TOX-Programmed Exhausted Phenotype of CD8+ T cells via Regulating JAK2/STAT3 Pathway [scRNA_VDJ-seq]

GSE262445 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2025/01/28 Platform GPL24247
Summary
T-cell exhaustion (Tex) phenotype has limited the efficacy of single-agent immune checkpoint blockade (ICB) in cancer immunotherapy, underscoring the need to target upstream pathways. Clinical trials have indicated that CXCR4 antagonists enhance anti-cancer activity. However, the specific mechanisms through which CXCR4 contributes to immune cell phenotypes are not fully understood. By targeting CXCR4 using antagonists or transgenic mice (Cxcr4flox/flox LckCre), we effectively attenuated the Tex phenotype and enhanced the functional T-cell phenotype in vivo. Additionally, single-cell RNA/TCR-seq analyses demonstrated that CXCR4 inhibition promotes anti-PD-1 immunotherapy by reducing CD8+ Tex phenotype and enriching the abundance of TCR clonotypes in vivo. Mechanically, we found that CXCR4-blocking T cells mitigate Tex phenotype by regulating the JAK2-STAT3 pathway, reducing the interaction between p-STAT3 and TOX. Single-cell ATAC/RNA-seq validated that CXCR4 deficiency epigenetically orchestrates the transition from functional to exhausted phenotypes in CD8+ T cells. Altogether, we demonstrate a mechanism of targeting CXCR4 to orchestrate CD8+ Tex cells in cancers and provide a rationale for the combined CXCR4 antagonists and ICBs in clinical trials.
Published in
CXCR4 orchestrates the TOX-programmed exhausted phenotype of CD8(+) T cells via JAK2/STAT3 pathway
Cao C, Xu M, Wei Y et al. · Cell genomics 2024 · PMID 39317187 · doi:10.1016/j.xgen.2024.100659
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Also filed as BioProject PRJNA1091881 and SRA study SRP497850. Searching any of these in the dataset finder brings you back here.

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