@article{35c8100d318e4d5cbd4f59b95977a3ad,
title = "Tumors produce glucocorticoids by metabolite recycling, not synthesis, and activate Tregs to promote growth",
abstract = "Glucocorticoids are steroid hormones with potent immunosuppressive properties. Their primary source is the adrenals, where they are generated via de novo synthesis from cholesterol. In addition, many tissues have a recycling pathway in which glucocorticoids are regenerated from inactive metabolites by the enzyme 11Β-hydroxysteroid dehydrogenase type 1 (11Β-HSD1, encoded by Hsd11b1). Here, we find that multiple tumor types express Hsd11b1 and produce active glucocorticoids. Genetic ablation of Hsd11b1 in such cells had no effect on in vitro growth, but reduced in vivo tumor progression, which corresponded with increased frequencies of CD8+ tumor-infiltrating lymphocytes (TILs) expressing activation markers and producing effector cytokines. Tumor-derived glucocorticoids were found to promote signatures of Treg activation and suppress signatures of conventional T cell activation in tumor-infiltrating Tregs. Indeed, CD8+ T cell activation was restored and tumor growth reduced in mice with Treg-specific glucocorticoid receptor deficiency. Importantly, pharmacologic inhibition of 11Β-HSD1 reduced tumor growth to the same degree as gene knockout and rendered immunotherapy-resistant tumors susceptible to PD-1 blockade. Given that HSD11B1 expression is upregulated in many human tumors and that inhibition of 11Β-HSD1 is well tolerated in clinical studies, these data suggest that targeting 11Β-HSD1 may be a beneficial adjunct in cancer therapy.",
author = "Taves, \{Matthew D.\} and Shizuka Otsuka and Taylor, \{Michaela A.\} and Donahue, \{Kaitlynn M.\} and Meyer, \{Thomas J.\} and Cam, \{Margaret C.\} and Ashwell, \{Jonathan D.\}",
note = "We thank R{\'e}my Bosselut, Melanie Vacchio, and Jia Nie (NCI, Bethesda, Maryland, USA) for sharing cell lines and Foxp3 reporter mice; Chi-Ping Day, Eva Perez Guijarro, Glenn Merlino, and Romina Goldszmidt (NCI, Bethesda, Maryland, USA) for sharing cell lines; Ferenc Livak, Caiyi Li, and Shafiuddin Siddiqui for help with cell sorting; Francesco Tomassino Ardori, Raj Chari, and Parirokh Awasthi for help with transgenic mouse generation; and Bhuvana Pandalai for technical assistance. This work was supported by the Intramural Research Program of the Center for Cancer Research, NCI, NIH, and by a Canadian Institutes of Health Research postdoctoral fellowship (MFE179782 to MDT). We thank R{\'e}my Bosselut, Melanie Vacchio, and Jia Nie (NCI, Bethesda, Maryland, USA) for sharing cell lines and Foxp3 reporter mice; Chi-Ping Day, Eva Perez Guijarro, Glenn Merlino, and Romina Goldszmidt (NCI, Bethesda, Maryland, USA) for sharing cell lines; Ferenc Livak, Caiyi Li, and Shafiuddin Siddiqui for help with cell sorting; Francesco Tomassino Ardori, Raj Chari, and Parirokh Awasthi for help with transgenic mouse generation; and Bhuvana Pandalai for technical assistance. This work was supported by the Intramural Research Program of the Center for Cancer Research, NCI, NIH, and by a Canadian Institutes of Health Research postdoctoral fellowship (MFE179782 to MDT)",
year = "2023",
month = sep,
day = "15",
doi = "10.1172/JCI164599",
language = "English (US)",
volume = "133",
journal = "Journal of Clinical Investigation",
issn = "0021-9738",
publisher = "American Society for Clinical Investigation",
number = "18",
}