Exercise-induced anti-obesity effects in male mice generated by a FOXO1-KLF10 reinforcing loop promoting adipose lipolysis

脂解 福克斯O1 脂肪组织 脂肪细胞 肥胖 白色脂肪组织 内分泌学 内科学 医学 西妥因1 下调和上调 转录因子 生物 基因 遗传学
作者
Jieying Zhu,Min Chen,Wang-Jing Mu,Hong-Yang Luo,Yang Li,Shan Li,Lin-Jing Yan,Ruo-Ying Li,Meng-Ting Yin,Xiaofei Li,Hu-Min Chen,Liang Guo
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:16 (1) 被引量:1
标识
DOI:10.1038/s41467-025-58467-1
摘要

Exercise combats obesity and metabolic disorders, but the underlying mechanism is incompletely understood. KLF10, a transcription factor involved in various biological processes, has an undefined role in adipose tissue and obesity. Here, we show that exercise facilitates adipocyte-derived KLF10 expression via SIRT1/FOXO1 pathway. Adipocyte-specific knockout of KLF10 blunts exercise-promoted white adipose browning, energy expenditure, fat loss, glucose tolerance in diet-induced obese male mice. Conversely, adipocyte-specific transgenic expression of KLF10 in male mice enhanced the above metabolic profits induced by exercise. Mechanistically, KLF10 interacts with FOXO1 and facilitates the recruitment of KDM4A to form a ternary complex on the promoter regions of Pnpla2 and Lipe genes to promote these key lipolytic genes expression by demethylating H3K9me3 on their promoters, which facilitates lipolysis to defend against obesity in male mice. As a downstream effector responding to exercise, adipose KLF10 could act as a potential target in the fight against obesity. The role of KLF10 in exercise-mediated anti-obesity effects is not clear. Here, the authors show that exercise-induced adipose KLF10 interacts with FOXO1 and recruits KDM4A to transactivate lipolytic genes, which defends against obesity in male mice.
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