PU.1-driven Th9 Cells Promote Colorectal Cancer in Experimental Colitis Models Through Il-6 Effects in Intestinal Epithelial Cells

Author:

Gerlach Katharina1,Popp Vanessa1,Wirtz Stefan12,Al-Saifi Ragheed1,Gonzalez Acera Miguel1,Atreya Raja13,Dregelies Theresa4,Vieth Michael4,Fichtner-Feigl Stefan5,McKenzie Andrew N J6,Rosenbauer Frank7,Weigmann Benno12,Neurath Markus F13

Affiliation:

1. Department of Medicine 1, Kussmaul Campus for Medical Research, University of Erlangen-Nuremberg , Erlangen , Germany

2. Medical Immunology Campus Erlangen, Friedrich-Alexander University Erlangen-Nuremberg , Erlangen , Germany

3. Deutsches Zentrum Immuntherapie [DZI], Erlangen, University of Erlangen-Nuremberg , Germany

4. Institute of Pathology, Klinikum Bayreuth, Friedrich-Alexander University Erlangen-Nuremberg , Erlangen , Germany

5. Department of General and Visceral Surgery, Medical Center-University of Freiburg , Freiburg , Germany

6. MRC Laboratory of Molecular Biology, Cambridge Biomedical Campus , Cambridge , UK

7. Laboratory of Molecular Stem Cell Biology, University of Münster, Münster , Germany

Abstract

Abstract Background and Aims Colorectal cancer [CRC] is one of the most frequent malignancies, but the molecular mechanisms driving cancer growth are incompletely understood. We characterised the roles of the cytokine IL-9 and Th9 cells in regulating CRC development. Methods CRC patient samples and samples from AOM/DSS treated mice were analysed for expression of IL-9, CD3, and PU.1 by FACS analysis and immunohistochemistry. IL-9 citrine reporter mice, IL-9 knockout mice, and PU.1 and GATA3 CD4-Cre conditional knockout mice were studied in the AOM/DSS model. DNA minicircles or hyper-IL-6 were used for overexpression of cytokines in vivo. Effects of IL-6 and IL-9 were determined in organoid and T cell cultures. Claudin2/3 expression was studied by western blotting and bacterial translocation by FISH. Results We uncovered a significant expansion of IL-9- and PU.1-expressing mucosal Th9 cells in CRC patients, with particularly high levels in patients with colitis-associated neoplasias. PU.1+ Th9 cells accumulated in experimental colorectal neoplasias. Deficiency of IL-9 or inactivation of PU.1 in T cells led to impaired tumour growth in vivo, suggesting a protumoral role of Th9 cells. In contrast, GATA3 inactivation did not affect Th9-mediated tumour growth. Mechanistically, IL-9 controls claudin2/3 expression and T cell-derived IL-6 production in colorectal tumours. IL-6 abrogated the anti-proliferative effects of IL-9 in epithelial organoids in vivo. IL-9-producing Th9 cells expand in CRC and control IL-6 production by T cells. Conclusions IL-9 is a crucial regulator of tumour growth in colitis-associated neoplasias and emerges as potential target for therapy.

Funder

Interdisciplinary Center for Clinical Research

Collaborative Research Centers

German Research Council

Emerging Fields Initiative and the Ludwig Demling Center

DFG

Publisher

Oxford University Press (OUP)

Subject

Gastroenterology,General Medicine

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