Immune escape of colorectal tumours via local LRH‐1/Cyp11b1‐mediated synthesis of immunosuppressive glucocorticoids

Author:

Ahmed Asma12,Reinhold Cindy1,Breunig Eileen1,Phan Truong San1,Dietrich Lea1,Kostadinova Feodora1,Urwyler Corinne3,Merk Verena M.1,Noti Mario4,Toja da Silva Israel56,Bode Konstantin1,Nahle Fatima1,Plazzo Anna Pia1,Koerner Julia7,Stuber Regula4,Menche Constantin89,Karamitopoulou Eva4,Farin Henner F.89,Gollob Kenneth J.5610,Brunner Thomas1ORCID

Affiliation:

1. Division of Biochemical Pharmacology, Department of Biology University of Konstanz Germany

2. Department of Pharmacology, Faculty of Medicine University of Khartoum Sudan

3. Department of Biology, Institute of Molecular Health Sciences Swiss Federal Institute of Technology (ETH) Zurich Switzerland

4. Institute of Pathology University of Bern Switzerland

5. International Research Center, A.C. Camargo Cancer Center São Paulo Brazil

6. National Institute for Science and Technology – Oncogenomics and Therapeutic Innovation (INCT‐INOTE) São Paulo Brazil

7. Division of Immunology, Department of Biology University of Konstanz Germany

8. Georg‐Speyer‐Haus, Institute for Tumor Biology and Experimental Therapy Frankfurt am Main Germany

9. Frankfurt Cancer Institute Goethe University Frankfurt am Main Germany

10. Albert Einstein Israelite Hospital São Paulo Brazil

Abstract

Control of tumour development and growth by the immune system critically defines patient fate and survival. What regulates the escape of colorectal tumours from destruction by the immune system remains currently unclear. Here, we investigated the role of intestinal synthesis of glucocorticoids in the tumour development during an inflammation‐induced mouse model of colorectal cancer. We demonstrate that the local synthesis of immunoregulatory glucocorticoids has dual roles in the regulation of intestinal inflammation and tumour development. In the inflammation phase, LRH‐1/Nr5A2‐regulated and Cyp11b1‐mediated intestinal glucocorticoid synthesis prevents tumour development and growth. In established tumours, however, tumour‐autonomous Cyp11b1‐mediated glucocorticoid synthesis suppresses anti‐tumour immune responses and promotes immune escape. Transplantation of glucocorticoid synthesis‐proficient colorectal tumour organoids into immunocompetent recipient mice resulted in rapid tumour growth, whereas transplantation of Cyp11b1‐deleted and glucocorticoid synthesis‐deficient tumour organoids was characterized by reduced tumour growth and increased immune cell infiltration. In human colorectal tumours, high expression of steroidogenic enzymes correlated with the expression of other immune checkpoints and suppressive cytokines, and negatively correlated with overall patients' survival. Thus, LRH‐1‐regulated tumour‐specific glucocorticoid synthesis contributes to tumour immune escape and represents a novel potential therapeutic target.

Funder

Deutsche Forschungsgemeinschaft

Fundação de Amparo à Pesquisa do Estado de São Paulo

Ministry of Higher Education and Scientific Research, Republic of Sudan

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

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