FTO-mediated cytoplasmic m6Am demethylation adjusts stem-like properties in colorectal cancer cell

Author:

Relier Sébastien,Ripoll Julie,Guillorit Hélène,Amalric Amandine,Achour CyrinneORCID,Boissière FlorenceORCID,Vialaret Jérôme,Attina Aurore,Debart FrançoiseORCID,Choquet Armelle,Macari Françoise,Marchand VirginieORCID,Motorin Yuri,Samalin Emmanuelle,Vasseur Jean-Jacques,Pannequin Julie,Aguilo Francesca,Lopez-Crapez Evelyne,Hirtz ChristopheORCID,Rivals EricORCID,Bastide AmandineORCID,David AlexandreORCID

Abstract

AbstractCancer stem cells (CSCs) are a small but critical cell population for cancer biology since they display inherent resistance to standard therapies and give rise to metastases. Despite accruing evidence establishing a link between deregulation of epitranscriptome-related players and tumorigenic process, the role of messenger RNA (mRNA) modifications in the regulation of CSC properties remains poorly understood. Here, we show that the cytoplasmic pool of fat mass and obesity-associated protein (FTO) impedes CSC abilities in colorectal cancer through its N6,2’-O-dimethyladenosine (m6Am) demethylase activity. While m6Am is strategically located next to the m7G-mRNA cap, its biological function is not well understood and has not been addressed in cancer. Low FTO expression in patient-derived cell lines elevates m6Am level in mRNA which results in enhanced in vivo tumorigenicity and chemoresistance. Inhibition of the nuclear m6Am methyltransferase, PCIF1/CAPAM, fully reverses this phenotype, stressing the role of m6Am modification in stem-like properties acquisition. FTO-mediated regulation of m6Am marking constitutes a reversible pathway controlling CSC abilities. Altogether, our findings bring to light the first biological function of the m6Am modification and its potential adverse consequences for colorectal cancer management.

Funder

Institut National Du Cancer

Ligue Contre le Cancer

Agence Nationale de la Recherche

Région Occitanie/FEDER

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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