DNMT3A epigenetically regulates key microRNAs involved in epithelial-to-mesenchymal transition in prostate cancer

Author:

Mancini Monica1ORCID,Grasso Margherita2,Muccillo Livio3,Babbio Federica1,Precazzini Francesca2,Castiglioni Ilaria1,Zanetti Valentina1,Rizzo Francesca45,Pistore Christian1,De Marino Maria Giovanna1,Zocchi Michele1,Del Vescovo Valerio2,Licursi Valerio6,Giurato Giorgio45ORCID,Weisz Alessandro45ORCID,Chiarugi Paola7,Sabatino Lina3,Denti Michela Alessandra2,Bonapace Ian Marc1ORCID

Affiliation:

1. Department of Biotechnology and Life Sciences, University of Insubria, Busto Arsizio, VA, Italy

2. Department of Cellular, Computational and Integrative Biology (CIBIO), University of Trento, Povo, TN, Italy

3. Department of Sciences and Technologies, University of Sannio, Benevento, Italy

4. Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry ‘Scuola Medica Salernitana’, University of Salerno, Baronissi, Italy

5. Genome Research Center for Health, c/o University of Salerno Campus of Medicine, Baronissi, SA, Italy

6. Department of Biology and Biotechnology “Charles Darwin”, “Sapienza” University of Rome, Rome, Italy

7. Department of Biomedical, Experimental and Clinical Sciences ‘Mario Serio’, University of Florence, Florence, Italy

Abstract

Abstract Epithelial-to-mesenchymal transition (EMT) is involved in prostate cancer (PCa) metastatic progression, and its plasticity suggests epigenetic implications. Deregulation of DNA methyltransferases (DNMTs) and several microRNAs (miRNAs) plays a relevant role in EMT, but their interplay has not been clarified yet. In this study, we provide evidence that DNMT3A interaction with several miRNAs has a central role in an ex vivo EMT PCa model obtained via exposure of PC3 cells to conditioned media from cancer-associated fibroblasts. The analysis of the alterations of the miRNA profile shows that miR-200 family (miR-200a/200b/429, miR-200c/141), miR-205 and miR-203, known to modulate key EMT factors, are down-regulated and hyper-methylated at their promoters. DNMT3A (mainly isoform a) is recruited onto these miRNA promoters, coupled with the increase of H3K27me3/H3K9me3 and/or the decrease of H3K4me3/H3K36me3. Most interestingly, our results reveal the differential expression of two DNMT3A isoforms (a and b) during ex vivo EMT and a regulatory feedback loop between miR-429 and DNMT3A that can promote and sustain the transition towards a more mesenchymal phenotype. We demonstrate the ability of miR-429 to target DNMT3A 3′UTR and modulate the expression of EMT factors, in particular ZEB1. Survey of the PRAD-TCGA dataset shows that patients expressing an EMT-like signature are indeed characterized by down-regulation of the same miRNAs with a diffused hyper-methylation at miR-200c/141 and miR-200a/200b/429 promoters. Finally, we show that miR-1260a also targets DNMT3A, although it does not seem to be involved in EMT in PCa.

Funder

Italian Association for Cancer Research

Regione Campania

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,General Medicine

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