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Deletion of the deISGylating enzyme USP18 enhances tumour cell antigenicity and radiosensitivity

Authors :
Henry Jack Pegg
Kilian Huber
Claudia Gonzalez-Lopez
Benedikt M. Kessler
Helene Greenwood
Adan Pinto-Fernandez
Jianzhou Chen
Persephone Borrow
Paul Smith
Mariolina Salio
Vincenzo Cerundolo
Cyriel S. Olie
Ruth J. Muschel
Alessandra Chiarenza
Andreas Damianou
L. Diaz-Saez
Tom Partridge
Neil P. Jones
Tim Hammonds
Hannah C. Scott
George Vere
Bhavisha Patel
Emma Anderton
Source :
British Journal of Cancer, British Journal of Cancer, 124(4), 817-830. SPRINGERNATURE
Publication Year :
2020
Publisher :
SPRINGERNATURE, 2020.

Abstract

Background Interferon (IFN) signalling pathways, a key element of the innate immune response, contribute to resistance to conventional chemotherapy, radiotherapy, and immunotherapy, and are often deregulated in cancer. The deubiquitylating enzyme USP18 is a major negative regulator of the IFN signalling cascade and is the predominant human protease that cleaves ISG15, a ubiquitin-like protein tightly regulated in the context of innate immunity, from its modified substrate proteins in vivo. Methods In this study, using advanced proteomic techniques, we have significantly expanded the USP18-dependent ISGylome and proteome in a chronic myeloid leukaemia (CML)-derived cell line. USP18-dependent effects were explored further in CML and colorectal carcinoma cellular models. Results Novel ISGylation targets were characterised that modulate the sensing of innate ligands, antigen presentation and secretion of cytokines. Consequently, CML USP18-deficient cells are more antigenic, driving increased activation of cytotoxic T lymphocytes (CTLs) and are more susceptible to irradiation. Conclusions Our results provide strong evidence for USP18 in regulating antigenicity and radiosensitivity, highlighting its potential as a cancer target.

Details

Language :
English
Database :
OpenAIRE
Journal :
British Journal of Cancer, British Journal of Cancer, 124(4), 817-830. SPRINGERNATURE
Accession number :
edsair.doi.dedup.....11d28c5c3d8b0b03d27c30c1135a2def