Scientists reveal immune attack blueprint as T cells strike cancer
Researchers have for the first time captured the genetic instructions that activate when killer T cells physically touch cancer cells, revealing which immune cells actually work in real tumors. The discovery could help companies and clinicians predict which patients will respond to cell-based cancer therapies and improve the design of next-generation immunotherapies.
Originaltitel: Immediate transcriptional changes initiated by direct cell-cell contact between cytotoxic T cells and cancer cells
Abstract Many biological processes are regulated by the direct interaction between two or more cell types. However, our understanding of the immediate dynamic changes in gene transcription upon physical interaction between two cells has remained limited due to technical limitations. Here we address these limitations in a model system of cancer-specific T cell receptor (TCR)-modified CD8 T cells where single and cancer-interacting T cells were isolated by image-enabled cell sorting and transcripts from heterotypic cancer cell and T cell pairs were in silico assigned. This approach uncovers immediate, dynamic changes in gene expression following the specific interaction between TCR-modified CD8 T cells and cancer cells. In addition to dissecting transcriptional cascades dependent on the peptide sensitivity of the TCR, we for the first time directly compare these gene expression changes between single T cells and T cells in direct physical contact with cancer cells. Modeling of the observed transcriptomic activation signature identifies phenotypically distinct tumor infiltrating CD8 T cell subsets associated with reduced TCR diversity in in vivo datasets. Taken together, the paradigm developed here allows for future clonal identification of T cell receptors mediating ongoing effective cytotoxic responses in vivo.