Liver cancer development driven by the AP-1/c-Jun~Fra-2 dimer through c-Myc

Author:

Bakiri Latifa12ORCID,Hasenfuss Sebastian C.2,Guío-Carrión Ana2ORCID,Thomsen Martin K.3ORCID,Hasselblatt Peter4ORCID,Wagner Erwin F.15ORCID

Affiliation:

1. Laboratory Genes and Disease, Department of Laboratory Medicine, Medical University of Vienna, 1090, Vienna, Austria

2. Genes, Development and Disease Group, National Cancer Research Centre, 28029, Madrid, Spain

3. Department of Biomedicine, University of Aarhus, 8000, Aarhus, Denmark

4. Department of Medicine II, University Hospital and Faculty of Medicine, 79106, Freiburg, Germany

5. Laboratory Genes and Disease, Department of Dermatology, Medical University of Vienna, 1090, Vienna, Austria

Abstract

Hepatocellular carcinoma (HCC) is a leading cause of cancer-related death. HCC incidence is on the rise, while treatment options remain limited. Thus, a better understanding of the molecular pathways involved in HCC development has become a priority to guide future therapies. While previous studies implicated the Activator Protein-1 (AP-1) (Fos/Jun) transcription factor family members c-Fos and c-Jun in HCC formation, the contribution of Fos-related antigens (Fra-) 1 and 2 is unknown. Here, we show that hepatocyte-restricted expression of a single chain c-Jun~Fra-2 protein, which functionally mimics the c-Jun/Fra-2 AP-1 dimer, results in spontaneous HCC formation in c-Jun~Fra-2 hep mice. Several hallmarks of human HCC, such as cell cycle dysregulation and the expression of HCC markers are observed in liver tumors arising in c-Jun~Fra-2 hep mice. Tumorigenesis occurs in the context of mild inflammation, low-grade fibrosis, and Pparγ-driven dyslipidemia. Subsequent analyses revealed increased expression of c-Myc, evidently under direct regulation by AP-1 through a conserved distal 3′ enhancer. Importantly, c-Jun~Fra-2-induced tumors revert upon switching off transgene expression, suggesting oncogene addiction to the c-Jun~Fra-2 transgene. Tumors escaping reversion maintained c-Myc and c-Myc target gene expression, likely due to increased c-Fos. Interfering with c-Myc in established tumors using the Bromodomain and Extra-Terminal motif inhibitor JQ-1 diminished liver tumor growth in c-Jun~Fra-2 mutant mice. Thus, our data establish c-Jun~Fra-2 hep mice as a model to study liver tumorigenesis and identify the c-Jun/Fra-2-Myc interaction as a potential target to improve HCC patient stratification and/or therapy.

Funder

EC | European Research Council

EC | Horizon 2020 Framework Programme

Publisher

Proceedings of the National Academy of Sciences

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