bioRxiv · 10.1101/2020.02.26.966291
Secreted autotaxin through LPA suppresses chemotaxis and tumor infiltration of CD8+ T Cells
Abstract
Autotaxin (ATX) is secreted by diverse cell types to produce lysophosphatidic acid (LPA) that regulates multiple biological functions via G protein-coupled receptors LPAR1-6. ATX/LPA promotes tumor cell migration and metastasis mainly via LPAR1; however, its actions in the tumor immune microenvironment remain unclear. Here, we show that ATX secreted by melanoma cells is chemorepulsive for tumor-infiltrating lymphocytes and circulating CD8+ T cells ex vivo, with ATX functioning as an LPA-producing chaperone. Mechanistically, T-cell repulsion predominantly involves G12/13-coupled LPAR6. Upon anti-cancer vaccination of tumor-bearing mice, ATX does not affect the induction of systemic T-cell responses but suppresses tumor infiltration of cytotoxic CD8+ T cells and thereby impairs tumor regression. Moreover, single-cell data from patient samples are consistent with intra-tumor ATX acting as a T-cell repellent. These studies highlight an unexpected role for the pro-metastatic ATX-LPAR axis in suppressing CD8+ T-cell infiltration to impede anti-tumor immunity, suggesting new therapeutic opportunities.
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Matas-Rico, E., van der Haar Avila, I., van Zon, M., Morris, A. J., Koster, J., Salgado-Polo, F., de Kivit, S., de Rink, I., Lanca, T., Alba, J. M., Johnson, Z., Farrow, S., Haanen, J., Schumacher, T. N., Perrakis, A., Borst, J., Verbrugge, I., van den Berg, J., Moolenaar, W. H.. 2020-02-27. Secreted autotaxin through LPA suppresses chemotaxis and tumor infiltration of CD8+ T Cells. https://doi.org/10.1101/2020.02.26.966291
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