糖酵解
产热
能量稳态
生物
内科学
内分泌学
平衡
核糖核酸
脂肪组织
细胞生物学
基因
新陈代谢
生物化学
肥胖
医学
作者
Yu Li,Yankang Zhang,Ting Zhang,Xiaodan Ping,Dongmei Wang,Yanru Chen,Jian Yu,Haibo Liu,Ziqi Liu,Yuhan Zheng,Yongfeng Yang,Chun Ruan,Dali Li,Zhen‐Yu Du,Jiqiu Wang,Lingyan Xu,Xinran Ma
标识
DOI:10.1002/advs.202300436
摘要
Abstract N6‐methyladenosine (m 6 A) 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 m 6 A‐sequencing and RNA‐sequencing, this work reports that upon beige adipocytes activation, glycolytic genes undergo major events of m 6 A modification and transcriptional activation. Genetic ablation of m 6 A 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 m 6 A reader Igf2bp2 control mRNA stability of key glycolytic genes in beige adipocytes. Overall, these findings highlight the significance of m 6 A on fat biology and systemic energy homeostasis.
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