生物
高铁F1
肥胖
能量稳态
转录因子
调解人
热疗
平衡
细胞生物学
内科学
内分泌学
基因
医学
遗传学
热休克蛋白
古生物学
热休克蛋白70
作者
Yu Li,Dongmei Wang,Xiaodan Ping,Yankang Zhang,Ting Zhang,Li Wang,Jin Li,Wenjun Zhao,Mingwei Guo,Fei Shen,Meiyao Meng,Xin Chen,Ying Zheng,Jiqiu Wang,Dali Li,Qiang Zhang,Cheng Hu,Lingyan Xu,Xinran Ma
出处
期刊:Cell
[Elsevier]
日期:2022-03-01
卷期号:185 (6): 949-966.e19
被引量:121
标识
DOI:10.1016/j.cell.2022.02.004
摘要
Beige fat plays key roles in the regulation of systemic energy homeostasis; however, detailed mechanisms and safe strategy for its activation remain elusive. In this study, we discovered that local hyperthermia therapy (LHT) targeting beige fat promoted its activation in humans and mice. LHT achieved using a hydrogel-based photothermal therapy activated beige fat, preventing and treating obesity in mice without adverse effects. HSF1 is required for the effects since HSF1 deficiency blunted the metabolic benefits of LHT. HSF1 regulates Hnrnpa2b1 (A2b1) transcription, leading to increased mRNA stability of key metabolic genes. Importantly, analysis of human association studies followed by functional analysis revealed that the HSF1 gain-of-function variant p.P365T is associated with improved metabolic performance in humans and increased A2b1 transcription in mice and cells. Overall, we demonstrate that LHT offers a promising strategy against obesity by inducing beige fat activation via HSF1-A2B1 transcriptional axis.
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