Tumors induce de novo steroid biosynthesis in T cells to evade immunity

Author:

Mahata BideshORCID,Pramanik Jhuma,van der Weyden Louise,Polanski KrzysztofORCID,Kar Gozde,Riedel Angela,Chen XiORCID,Fonseca Nuno A.ORCID,Kundu KousikORCID,Campos Lia S.,Ryder EdwardORCID,Duddy Graham,Walczak Izabela,Okkenhaug KlausORCID,Adams David J.ORCID,Shields Jacqueline D.ORCID,Teichmann Sarah A.ORCID

Abstract

AbstractTumors subvert immune cell function to evade immune responses, yet the complex mechanisms driving immune evasion remain poorly understood. Here we show that tumors induce de novo steroidogenesis in T lymphocytes to evade anti-tumor immunity. Using a transgenic steroidogenesis-reporter mouse line we identify and characterize de novo steroidogenic immune cells, defining the global gene expression identity of these steroid-producing immune cells and gene regulatory networks by using single-cell transcriptomics. Genetic ablation of T cell steroidogenesis restricts primary tumor growth and metastatic dissemination in mouse models. Steroidogenic T cells dysregulate anti-tumor immunity, and inhibition of the steroidogenesis pathway is sufficient to restore anti-tumor immunity. This study demonstrates T cell de novo steroidogenesis as a mechanism of anti-tumor immunosuppression and a potential druggable target.

Funder

Cancer Research UK

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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