Rna M6a Methylation Regulates Glycolysis of Beige Fat and Contributes to Systemic Metabolic Homeostasis

  • Yu Li
  • , Yankang Zhang
  • , Ting Zhang
  • , Xiaodan Ping
  • , Dongmei Wang
  • , Yanru Chen
  • , Jian Yu
  • , Caizhi Liu
  • , Ziqi Liu
  • , Yuhan Zheng
  • , Yongfeng Yang
  • , Chengchao Ruan
  • , Dali Li
  • , Zhenyu Du
  • , Jiqiu Wang
  • , Lingyan Xu
  • , Xinran Ma*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

N6-methyladenosine (m6A) modification has been implicated in the progression of obesity and metabolic diseases. However, its impact on beige fat biology is not well understood. Here, via m6A-sequencing and RNA-sequencing, this work reports that upon beige adipocytes activation, glycolytic genes undergo major events of m6A modification and transcriptional activation. Genetic ablation of m6A writer Mettl3 in fat tissues reveals that Mettl3 deficiency in mature beige adipocytes leads to suppressed glycolytic capability and thermogenesis, as well as reduced preadipocytes proliferation via glycolytic product lactate. In addition, specific modulation of Mettl3 in beige fat via AAV delivery demonstrates consistently Mettl3's role in glucose metabolism, thermogenesis, and beige fat hyperplasia. Mechanistically, Mettl3 and m6A reader Igf2bp2 control mRNA stability of key glycolytic genes in beige adipocytes. Overall, these findings highlight the significance of m6A on fat biology and systemic energy homeostasis.

Original languageEnglish
Article number2300436
JournalAdvanced Science
Volume10
Issue number25
DOIs
StatePublished - 5 Sep 2023

Keywords

  • Mettl3
  • N6-methyladenosine
  • beige fat
  • energy homeostasis
  • glycolysis
  • preadipocytes proliferation

Fingerprint

Dive into the research topics of 'Rna M6a Methylation Regulates Glycolysis of Beige Fat and Contributes to Systemic Metabolic Homeostasis'. Together they form a unique fingerprint.

Cite this