Deregulated expression of the imprinted DLK1-DIO3 region in glioblastoma stemlike cells: tumor suppressor role of lncRNA MEG3

Author:

Buccarelli Mariachiara1,Lulli Valentina1,Giuliani Alessandro2,Signore Michele3,Martini Maurizio45,D’Alessandris Quintino G46,Giannetti Stefano47,Novelli Agnese8,Ilari Ramona1,Giurato Giorgio910ORCID,Boe Alessandra3,Castellani Giorgia1,Spartano Serena8,Marangi Giuseppe18,Biffoni Mauro1,Genuardi Maurizio48,Pallini Roberto46,Marziali Giovanna18,Ricci-Vitiani Lucia1

Affiliation:

1. Department of Oncology and Molecular Medicine Rome, Italy

2. Environment and Health, Higher Institute of Health Rome, Italy

3. Core Facilities, Higher Institute of Health (Istituto Superiore di Sanità), Rome, Italy

4. A. Gemelli University Polyclinic Foundation, Scientific Hospitalization and Care Institute (IRCCS), Rome, Italy

5. Institutes of Pathology, Catholic University School of Medicine, Rome, Italy

6. Neurosurgery, Catholic University School of Medicine, Rome, Italy

7. Human Anatomy, Catholic University School of Medicine, Rome, Italy

8. Genomic Medicine, Catholic University School of Medicine, Rome, Italy

9. Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery, and Dentistry, “Scuola Medica Salernitana,” University of Salerno, Baronissi, Salerno, Italy

10. Genomix4Life Srl, University of Salerno, Baronissi, Salerno, Italy

Abstract

Abstract Background Glioblastoma (GBM) stemlike cells (GSCs) are thought to be responsible for the maintenance and aggressiveness of GBM, the most common primary brain tumor in adults. This study aims at elucidating the involvement of deregulations within the imprinted delta-like homolog 1 gene‒type III iodothyronine deiodinase gene (DLK-DIO3) region on chromosome 14q32 in GBM pathogenesis. Methods Real-time PCR analyses were performed on GSCs and GBM tissues. Methylation analyses, gene expression, and reverse-phase protein array profiles were used to investigate the tumor suppressor function of the maternally expressed 3 gene (MEG3). Results Loss of expression of genes and noncoding RNAs within the DLK1-DIO3 region was observed in GSCs and GBM tissues compared with normal brain. This downregulation is mainly mediated by epigenetic silencing. Kaplan–Meier analysis indicated that low expression of MEG3 and MEG8 long noncoding (lnc)RNAs significantly correlated with short survival in GBM patients. MEG3 restoration impairs tumorigenic abilities of GSCs in vitro by inhibiting cell growth, migration, and colony formation and decreases in vivo tumor growth, reducing infiltrative growth. These effects were associated with modulation of genes involved in cell adhesion and epithelial-to-mesenchymal transition (EMT). Conclusion In GBM, MEG3 acts as a tumor suppressor mainly regulating cell adhesion, EMT, and cell proliferation, thus providing a potential candidate for novel GBM therapies.

Funder

Italian Ministry of Health

AIRC

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Clinical Neurology,Oncology

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