5-Azacytidine Downregulates the Proliferation and Migration of Hepatocellular Carcinoma Cells In Vitro and In Vivo by Targeting miR-139-5p/ROCK2 Pathway

Author:

Tonon Federica,Cemazar MajaORCID,Kamensek UrskaORCID,Zennaro CristinaORCID,Pozzato Gabriele,Caserta SergioORCID,Ascione Flora,Grassi MarioORCID,Guido StefanoORCID,Ferrari CinziaORCID,Cansolino LauraORCID,Trotta Francesco,Kuzmanov Biljana Grcar,Forte GiancarloORCID,Martino Fabiana,Perrone Francesca,Bomben RiccardoORCID,Gattei Valter,Elvassore Nicola,Murano Erminio,Truong Nhung Hai,Olson MichaelORCID,Farra Rossella,Grassi GabrieleORCID,Dapas Barbara

Abstract

Background: For hepatocellular carcinoma (HCC), effective therapeutic approaches are lacking. As aberrant gene methylation is a major contributor to HCC development, demethylating drugs such as 5-azacytidine (5-Aza) have been proposed. As most 5-Aza mechanisms of action are unknown, we investigated its phenotypic/molecular effects. Methods: 5-Aza effects were examined in the human HCC cell lines JHH-6/HuH-7 and in the rat cell-line N1-S1. We also employed a xenograft mouse model (HuH-7), a zebrafish model (JHH-6), and an orthotopic syngeneic rat model (N1-S1) of HCC. Results: 5-Aza downregulated cell viability/growth/migration/adhesion by upregulating miR-139-5p, which in turn downregulated ROCK2/cyclin D1/E2F1 and increased p27kip1, resulting in G1/G0 cell accumulation. Moreover, a decrease in cyclin B1 and an increase in p27kip1 led to G2/M accumulation. Finally, we observed a decrease in MMP-2 levels, a stimulator of HCC cell migration. Aza effects were confirmed in the mouse model; in the zebrafish model, we also demonstrated the downregulation of tumor neo-angiogenesis, and in the orthotopic rat model, we observed impaired N1-S1 grafting in a healthy liver. Conclusion: We demonstrate for the first time that 5-Aza can impair HCC development via upregulation of miR-139-5p, which in turn impairs the ROCK2/cyclin D1/E2F1/cyclin B1 pro-proliferative pathway and the ROCK2/MMP-2 pro-migratory pathway. Thus, we provide novel information about 5-Aza mechanisms of action and deepen the knowledge about the crosstalk among ROCK2/cyclin D1/E2F1/cyclin B1/p27kip1/MMP-2 in HCC.

Funder

Fondazione Benefica Kathleen Foreman Casali of Trieste, Italy

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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