Dynamic regulation of N6,2′-O-dimethyladenosine (m6Am) in obesity

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作者
Moshe Shay Ben-Haim
Yishay Pinto
Sharon Moshitch-Moshkovitz
Vera Hershkovitz
Nitzan Kol
Tammy Diamant-Levi
Michal Schnaider Beeri
Ninette Amariglio
Haim Y. Cohen
Gideon Rechavi
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[1] Cancer Research Center,Sackler School of Medicine
[2] Chaim Sheba Medical Center,Department of Psychology
[3] Tel Aviv University,The Mina and Everard Goodman Faculty of Life Sciences
[4] The Wohl Institute for Translational Medicine,undefined
[5] Chaim Sheba Medical Center,undefined
[6] The Hebrew University of Jerusalem,undefined
[7] Bar-Ilan University,undefined
[8] The Joseph Sagol Neuroscience Center,undefined
[9] Chaim Sheba Medical Center,undefined
[10] Mount Sinai School of Medicine,undefined
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The prevalent m6Am mRNA cap modification was recently identified as a valid target for removal by the human obesity gene FTO along with the previously established m6A mRNA modification. However, the deposition and dynamics of m6Am in regulating obesity are unknown. Here, we investigate the liver m6A/m methylomes in mice fed on a high fat Western-diet and in ob/ob mice. We find that FTO levels are elevated in fat mice, and that genes which lost m6Am marking under obesity are overly downregulated, including the two fatty-acid-binding proteins FABP2, and FABP5. Furthermore, the cellular perturbation of FTO correspondingly affect protein levels of its targets. Notably, generally m6Am- but not m6A-methylated genes, are found to be highly enriched in metabolic processes. Finally, we deplete all m6A background via Mettl3 knockout, and unequivocally uncover the association of m6Am methylation with increased mRNA stability, translation efficiency, and higher protein expression. Together, these results strongly implicate a dynamic role for m6Am in obesity-related translation regulation.
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