Nicotinamide N‐methyltransferase sustains a core epigenetic program that promotes metastatic colonization in breast cancer

Author:

Couto Joana Pinto123,Vulin Milica123ORCID,Jehanno Charly12ORCID,Coissieux Marie‐May123ORCID,Hamelin Baptiste12,Schmidt Alexander4ORCID,Ivanek Robert15ORCID,Sethi Atul1235,Bräutigam Konstantin67ORCID,Frei Anja L6,Hager Carolina12,Manivannan Madhuri12,Gómez‐Miragaya Jorge12ORCID,Obradović Milan MS123,Varga Zsuzsanna6ORCID,Koelzer Viktor H6ORCID,Mertz Kirsten D8ORCID,Bentires‐Alj Mohamed123ORCID

Affiliation:

1. Department of Biomedicine, University Hospital Basel University of Basel Basel Switzerland

2. Department of Surgery University Hospital Basel Basel Switzerland

3. Friedrich Miescher Institute for Biomedical Research Basel Switzerland

4. Proteomics Core Facility, Biozentrum University of Basel Basel Switzerland

5. Swiss Institute of Bioinformatics Basel Switzerland

6. Computational and Translational Pathology Group, Department of Pathology and Molecular Pathology, University Hospital Zurich University of Zurich Zürich Switzerland

7. Institute of Pathology University of Bern Bern Switzerland

8. Institute of Pathology Cantonal Hospital Baselland Liestal Switzerland

Abstract

AbstractMetastatic colonization of distant organs accounts for over 90% of deaths related to solid cancers, yet the molecular determinants of metastasis remain poorly understood. Here, we unveil a mechanism of colonization in the aggressive basal‐like subtype of breast cancer that is driven by the NAD+ metabolic enzyme nicotinamide N‐methyltransferase (NNMT). We demonstrate that NNMT imprints a basal genetic program into cancer cells, enhancing their plasticity. In line, NNMT expression is associated with poor clinical outcomes in patients with breast cancer. Accordingly, ablation of NNMT dramatically suppresses metastasis formation in pre‐clinical mouse models. Mechanistically, NNMT depletion results in a methyl overflow that increases histone H3K9 trimethylation (H3K9me3) and DNA methylation at the promoters of PR/SET Domain‐5 (PRDM5) and extracellular matrix‐related genes. PRDM5 emerged in this study as a pro‐metastatic gene acting via induction of cancer‐cell intrinsic transcription of collagens. Depletion of PRDM5 in tumor cells decreases COL1A1 deposition and impairs metastatic colonization of the lungs. These findings reveal a critical activity of the NNMT‐PRDM5‐COL1A1 axis for cancer cell plasticity and metastasis in basal‐like breast cancer.

Funder

European Research Council

H2020 Marie Skłodowska-Curie Actions

European Molecular Biology Organization

Krebsliga Schweiz

Promedica Stiftung

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Novartis

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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