bioRxiv · 10.1101/799759
An endogenous glucocorticoid-cytokine signaling circuit promotes CD8+ T cell dysfunction in the tumor microenvironment
Abstract
Identifying signals in the tumor microenvironment (TME) that promote CD8+ T cell dysfunction can inform improved therapeutic approaches for cancer. Here, we identify that Nr3c1, the gene encoding the glucocorticoid receptor (GR), is highly expressed in dysfunctional CD8+ tumor-infiltrating lymphocytes (TILs). The GR transactivates expression of multiple checkpoint receptors and loss of GR in CD8+ T cells limits dysfunctional phenotype in CD8+ TILs resulting in improved tumor growth control. We show that glucocorticoids can be produced in the TME and that they co-operate with the immunosuppressive cytokine IL-27 to promote the dysfunction gene program in CD8+ T cells. The presence of the glucocorticoid + IL27 signature in CD8+ TILs correlates with failure to respond to checkpoint blockade in melanoma patients, highlighting the relevance of this immunoregulatory glucocorticoid-cytokine circuit in tumor tissue.
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Acharya, N., Madi, A., Zhang, H., Klapholz, M., Christian, E., Dixon, K. O., Fell, G., Tooley, K., Mangani, D., Xia, J., Singer, M., Neuberg, D., Rozenblatt-Rosen, O., Regev, A., Kuchroo, V. K., Anderson, A. C.. 2019-10-10. An endogenous glucocorticoid-cytokine signaling circuit promotes CD8+ T cell dysfunction in the tumor microenvironment. https://doi.org/10.1101/799759
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