USP16 is an ISG15 cross-reactive deubiquitinase that targets pro-ISG15 and ISGylated proteins involved in metabolism

Author:

Gan Jin12,Pinto-Fernández Adán34,Flierman Dennis1,Akkermans Jimmy J. L. L.5,O’Brien Darragh P.4,Greenwood Helene4,Scott Hannah Claire3,Fritz Günter6,Knobeloch Klaus-Peter78,Neefjes Jacques5,van Dam Hans1,Ovaa Huib1,Ploegh Hidde L.2ORCID,Kessler Benedikt M.34ORCID,Geurink Paul P.1ORCID,Sapmaz Aysegul1ORCID

Affiliation:

1. Department of Cell and Chemical Biology, Division of Chemical Biology and Drug Discovery, Leiden University Medical Center, Leiden 2333 ZC, The Netherlands

2. Program in Cellular and Molecular Medicine, Boston Children's Hospital, Harvard Medical School, Boston, MA 02115

3. Chinese Academy for Medical Sciences Oxford Institute, Nuffield Department of Medicine, University of Oxford, Oxford OX3 7BN, United Kingdom

4. Target Discovery Institute, Nuffield Department of Medicine, Centre for Medicines Discovery, University of Oxford, Oxford OX3 7FZ, United Kingdom

5. Department of Cell and Chemical Biology and Oncode Institute, Leiden University Medical Center LUMC, Leiden 2333 ZC, The Netherlands

6. Department of Cellular Microbiology, University of Hohenheim, Stuttgart 70599, Germany

7. Institute of Neuropathology, Faculty of Medicine, Department of Molecular Genetics, University of Freiburg, Freiburg 79106, Germany

8. Centre for Integrative Biological Signalling Studies, Department of Molecular Genetics, University of Freiburg, Freiburg 79104, Germany

Abstract

Interferon-induced ubiquitin (Ub)-like modifier ISG15 covalently modifies host and viral proteins to restrict viral infections. Its function is counteracted by the canonical deISGylase USP18 or Ub-specific protease 18. Notwithstanding indications for the existence of other ISG15 cross-reactive proteases, these remain to be identified. Here, we identify deubiquitinase USP16 as an ISG15 cross-reactive protease by means of ISG15 activity-based profiling. Recombinant USP16 cleaved pro-ISG15 and ISG15 isopeptide-linked model substrates in vitro, as well as ISGylated substrates from cell lysates. Moreover, interferon-induced stimulation of ISGylation was increased by depletion of USP16. The USP16-dependent ISG15 interactome indicated that the deISGylating function of USP16 may regulate metabolic pathways. Targeted enzymes include malate dehydrogenase, cytoplasmic superoxide dismutase 1, fructose-bisphosphate aldolase A, and cytoplasmic glutamic-oxaloacetic transaminase 1. USP16 may thus contribute to the regulation of a subset of metabolism-related proteins during type-I interferon responses.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

e Chinese Academy of Medical Sciences (CAMS) Innovation Fund for Medical Science

HHS | National Institutes of Health

Deutsche Forschungsgemeinschaft

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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