FTO-dependent demethylation of N6-methyladenosine regulates mRNA splicing and is required for adipogenesis

Xu Zhao(Beijing Institute of Genomics), Ying Yang(Beijing Institute of Genomics), Baofa Sun(Beijing Institute of Genomics), Yue Shi(Beijing Institute of Genomics), Xin Yang(Beijing Institute of Genomics), Wen Xiao(Beijing Institute of Genomics), Yajuan Hao(Beijing Institute of Genomics), Xiaoli Ping(Beijing Institute of Genomics), Yusheng Chen(Beijing Institute of Genomics), Wenjia Wang(University of Chinese Academy of Sciences), Kang-Xuan Jin(University of Chinese Academy of Sciences), Xing Wang(Beijing Institute of Genomics), Chun-Min Huang(Beijing Institute of Genomics), Yu Fu(Tsinghua University), Xiaomeng Ge(Beijing Institute of Genomics), Shuhui Song(Beijing Institute of Genomics), Hyun Seok Jeong(The University of Tokyo), Hiroyuki Yanagisawa(RIKEN Advanced Science Institute), Yamei Niu(Chinese Academy of Medical Sciences & Peking Union Medical College), Guifang Jia(Beijing National Laboratory for Molecular Sciences), Wei Wu(Tsinghua University), Wei‐Min Tong(Chinese Academy of Medical Sciences & Peking Union Medical College), Akimitsu Okamoto(The University of Tokyo), Chuan He(Beijing National Laboratory for Molecular Sciences), Jannie M. Rendtlew Danielsen(Novo Nordisk Foundation), Xiu‐Jie Wang(Institute of Genetics and Developmental Biology), Yun‐Gui Yang(Beijing Institute of Genomics)
Cell Research
November 21, 2014
Cited by 1,226Open Access
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Abstract

The role of Fat Mass and Obesity-associated protein (FTO) and its substrate N6-methyladenosine (m6A) in mRNA processing and adipogenesis remains largely unknown. We show that FTO expression and m6A levels are inversely correlated during adipogenesis. FTO depletion blocks differentiation and only catalytically active FTO restores adipogenesis. Transcriptome analyses in combination with m6A-seq revealed that gene expression and mRNA splicing of grouped genes are regulated by FTO. M6A is enriched in exonic regions flanking 5'- and 3'-splice sites, spatially overlapping with mRNA splicing regulatory serine/arginine-rich (SR) protein exonic splicing enhancer binding regions. Enhanced levels of m6A in response to FTO depletion promotes the RNA binding ability of SRSF2 protein, leading to increased inclusion of target exons. FTO controls exonic splicing of adipogenic regulatory factor RUNX1T1 by regulating m6A levels around splice sites and thereby modulates differentiation. These findings provide compelling evidence that FTO-dependent m6A demethylation functions as a novel regulatory mechanism of RNA processing and plays a critical role in the regulation of adipogenesis.


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