A Novel Mouse Model of Combined Hepatocellular-Cholangiocarcinoma Induced by Diethylnitrosamine and Loss of Ppp2r5d

Author:

Domènech Omella Judit1ORCID,Cortesi Emanuela E.2,Verbinnen Iris1,Remmerie Michiel1,Wu Hanghang3,Cubero Francisco J.345ORCID,Roskams Tania26,Janssens Veerle17ORCID

Affiliation:

1. Laboratory of Protein Phosphorylation & Proteomics, Department of Cellular & Molecular Medicine, University of Leuven (KU Leuven), 3000 Leuven, Belgium

2. Translational Cell & Tissue Research, University of Leuven (KU Leuven), 3000 Leuven, Belgium

3. Department of Immunology, Ophthalmology & ENT, Complutense University School of Medicine, 28040 Madrid, Spain

4. Health Research Institute Gregorio Marañón (IiSGM), 28007 Madrid, Spain

5. Centre for Biomedical Research, Network on Liver and Digestive Diseases (CIBEREHD), 28029 Madrid, Spain

6. Department of Pathology, University Hospitals Leuven (UZ Leuven), 3000 Leuven, Belgium

7. KU Leuven Cancer Institute (LKI), 3000 Leuven, Belgium

Abstract

Primary liver cancer (PLC) can be classified in hepatocellular (HCC), cholangiocarcinoma (CCA), and combined hepatocellular-cholangiocarcinoma (cHCC-CCA). The molecular mechanisms involved in PLC development and phenotype decision are still not well understood. Complete deletion of Ppp2r5d, encoding the B56δ subunit of Protein Phosphatase 2A (PP2A), results in spontaneous HCC development in mice via a c-MYC-dependent mechanism. In the present study, we aimed to examine the role of Ppp2r5d in an independent mouse model of diethylnitrosamine (DEN)-induced hepatocarcinogenesis. Ppp2r5d deletion (heterozygous and homozygous) accelerated HCC development, corroborating its tumor-suppressive function in liver and suggesting Ppp2r5d may be haploinsufficient. Ppp2r5d-deficient HCCs stained positively for c-MYC, consistent with increased AKT activation in pre-malignant and tumor tissues of Ppp2r5d-deficient mice. We also found increased YAP activation in Ppp2r5d-deficient tumors. Remarkably, in older mice, Ppp2r5d deletion resulted in cHCC-CCA development in this model, with the CCA component showing increased expression of progenitor markers (SOX9 and EpCAM). Finally, we observed an upregulation of Ppp2r5d in tumors from wildtype and heterozygous mice, revealing a tumor-specific control mechanism of Ppp2r5d expression, and suggestive of the involvement of Ppp2r5d in a negative feedback regulation restricting tumor growth. Our study highlights the tumor-suppressive role of mouse PP2A-B56δ in both HCC and cHCC-CCA, which may have important implications for human PLC development and targeted treatment.

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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