UCHL1-dependent control of hypoxia-inducible factor transcriptional activity during liver fibrosis

Author:

Collins Amy1,Scott Rebecca1,Wilson Caroline L.1,Abbate Giuseppe2,Ecclestone Gabrielle B.3,Albanese Adam G.3,Biddles Demi4,White Steven5,French Jeremy5,Moir John5,Alrawashdeh Wasfi5,Wilson Colin5,Pandanaboyana Sanjay5,Hammond John S.5,Thakkar Rohan5,Oakley Fiona1,Mann Jelena12,Mann Derek A.1,Kenneth Niall S.3

Affiliation:

1. 1Newcastle Fibrosis Research Group, Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, U.K.

2. 2FibroFind Ltd, FibroFind Laboratories, Medical School, Newcastle University, U.K.

3. 3Department of Biochemistry, Cell and Systems Biology, Institute of Systems, Molecular and Integrative Biology University of Liverpool, U.K.

4. 4Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne NE2 4HH, U.K.

5. 5Department of HPB and Transplant Surgery, Freeman Hospital, Newcastle Upon Tyne, U.K.

Abstract

Abstract Liver fibrosis is the excessive accumulation of extracellular matrix proteins that occurs in most types of chronic liver disease. At the cellular level, liver fibrosis is associated with the activation of hepatic stellate cells (HSCs) which transdifferentiate into a myofibroblast-like phenotype that is contractile, proliferative and profibrogenic. HSC transdifferentiation induces genome-wide changes in gene expression that enable the cell to adopt its profibrogenic functions. We have previously identified that the deubiquitinase ubiquitin C-terminal hydrolase 1 (UCHL1) is highly induced following HSC activation; however, the cellular targets of its deubiquitinating activity are poorly defined. Here, we describe a role for UCHL1 in regulating the levels and activity of hypoxia-inducible factor 1 (HIF1), an oxygen-sensitive transcription factor, during HSC activation and liver fibrosis. HIF1 is elevated during HSC activation and promotes the expression of profibrotic mediator HIF target genes. Increased HIF1α expression correlated with induction of UCHL1 mRNA and protein with HSC activation. Genetic deletion or chemical inhibition of UCHL1 impaired HIF activity through reduction of HIF1α levels. Furthermore, our mechanistic studies have shown that UCHL1 elevates HIF activity through specific cleavage of degradative ubiquitin chains, elevates levels of pro-fibrotic gene expression and increases proliferation rates. As we also show that UCHL1 inhibition blunts fibrogenesis in a pre-clinical 3D human liver slice model of fibrosis, these results demonstrate how small molecule inhibitors of DUBs can exert therapeutic effects through modulation of HIF transcription factors in liver disease. Furthermore, inhibition of HIF activity using UCHL1 inhibitors may represent a therapeutic opportunity with other HIF-related pathologies.

Funder

North West Cancer Research/Mesothelioma UK

Cancer Research UK

North West Cancer Research

Biotechnology and Biological Sciences Research Council

Medical Research Council

Worldwide Cancer Research

Publisher

Portland Press Ltd.

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