bioRxiv · 10.1101/2021.04.12.439455
In vivo genome-wide CRISPR screens identify SOCS1 as a major intrinsic checkpoint of CD4+ Th1 cell response
Abstract
The expansion of antigen experienced CD4+ T cells is limited by intrinsic factors. Using in vivo genome-wide CRISPR-Cas9 screens, we identified SOCS1 as a non-redundant checkpoint imposing a brake on CD4+ T-cell proliferation upon rechallenge. We show here that SOCS1 is a critical node integrating both IL-2 and IFN-{gamma} signals and blocking multiple signaling pathways to abrogate CD4+ Th1 cell response. In CD8+ T-cell, SOCS1 does not impact the proliferation but rather reduces survival and effector functions. By targeting SOCS1, both murine and human CD4+ T-cell antitumor adoptive therapies exhibit a restored intra-tumor accumulation, proliferation/survival, persistence and polyfunctionality, promoting long term rejection of established tumors. These findings identify SOCS1 as a major intracellular checkpoint inhibitor of primed CD4+ T cells, opening new possibilities to optimize CAR-T cell therapies composition and efficacy.
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Sutra Del Galy, A., Menegatti, S., Fuentealba, J., Lucibello, F., Helft, J., Darbois, A., Saitakis, M., Tosello, J., Rookhuizen, D., Perrin, L., Deloger, M., Gestraud, P., Socie, G., Amigorena, S., Lantz, O., Menger, L.. 2021-04-12. In vivo genome-wide CRISPR screens identify SOCS1 as a major intrinsic checkpoint of CD4+ Th1 cell response. https://doi.org/10.1101/2021.04.12.439455
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