Li Yu, Wang Dongmei, Ping Xiaodan, Zhang Yankang, Zhang Ting, Wang Li, Jin Li, Zhao Wenjun, Guo Mingwei, Shen Fei, Meng Meiyao, Chen Xin, Zheng Ying, Wang Jiqiu, Li Dali, Zhang Qiang, Hu Cheng, Xu Lingyan, Ma Xinran
Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences, School of Life Sciences, East China Normal University, Shanghai 200241, China.
Shanghai Diabetes Institute, Shanghai Key Laboratory of Diabetes Mellitus, Shanghai Clinical Centre for Diabetes, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai 200233, China.
Cell. 2022 Mar 17;185(6):949-966.e19. doi: 10.1016/j.cell.2022.02.004. Epub 2022 Mar 4.
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.
米色脂肪在全身能量稳态调节中发挥着关键作用;然而,其激活的详细机制和安全策略仍不明确。在本研究中,我们发现针对米色脂肪的局部热疗(LHT)可促进其在人和小鼠体内的激活。使用基于水凝胶的光热疗法实现的LHT激活了米色脂肪,在小鼠中预防和治疗肥胖且无不良影响。HSF1是产生这些效应所必需的,因为HSF1缺陷会削弱LHT的代谢益处。HSF1调节Hnrnpa2b1(A2b1)转录,导致关键代谢基因的mRNA稳定性增加。重要的是,对人类关联研究进行分析并随后进行功能分析发现,功能获得性变体p.P365T与人类代谢性能改善以及小鼠和细胞中A2b1转录增加相关。总体而言,我们证明LHT通过HSF1 - A2B1转录轴诱导米色脂肪激活,为对抗肥胖提供了一种有前景的策略。