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棕色脂肪组织形成与功能的分子钟整合

Molecular clock integration of brown adipose tissue formation and function.

作者信息

Nam Deokhwa, Yechoor Vijay K, Ma Ke

机构信息

Center for Diabetes Research, Department of Medicine, The Methodist Hospital Research Institute , Houston, TX, USA.

Diabetes and Endocrinology Research Center, Department of Medicine, Baylor College of Medicine , Houston, TX, USA.

出版信息

Adipocyte. 2015 Aug 12;5(2):243-50. doi: 10.1080/21623945.2015.1082015. eCollection 2016 Apr-Jun.

Abstract

The circadian clock is an essential time-keeping mechanism that entrains internal physiology to environmental cues. Despite the well-established link between the molecular clock and metabolic homeostasis, an intimate interplay between the clock machinery and the metabolically active brown adipose tissue (BAT) is only emerging. Recently, we came to appreciate that the formation and metabolic functions of BAT, a key organ for body temperature maintenance, are under an orchestrated circadian clock regulation. Two complementary studies from our group uncover that the cell-intrinsic clock machinery exerts concerted control of brown adipogenesis with consequent impacts on adaptive thermogenesis, which adds a previously unappreciated temporal dimension to the regulatory mechanisms governing BAT development and function. The essential clock transcriptional activator, Bmal1, suppresses adipocyte lineage commitment and differentiation, whereas the clock repressor, Rev-erbα, promotes these processes. This newly discovered temporal mechanism in fine-tuning BAT thermogenic capacity may enable energy utilization and body temperature regulation in accordance with external timing signals during development and functional recruitment. Given the important role of BAT in whole-body metabolic homeostasis, pharmacological interventions targeting the BAT-modulatory activities of the clock circuit may offer new avenues for the prevention and treatment of metabolic disorders, particularly those associated with circadian dysregulation.

摘要

昼夜节律时钟是一种重要的计时机制,它使内部生理机能与环境线索同步。尽管分子时钟与代谢稳态之间的联系已得到充分确立,但时钟机制与具有代谢活性的棕色脂肪组织(BAT)之间的密切相互作用才刚刚显现出来。最近,我们逐渐认识到,BAT作为维持体温的关键器官,其形成和代谢功能受到精心编排的昼夜节律时钟调控。我们团队的两项互补性研究发现,细胞内在的时钟机制对棕色脂肪生成发挥协同控制作用,进而影响适应性产热,这为调控BAT发育和功能的机制增添了一个此前未被认识到的时间维度。重要的时钟转录激活因子Bmal1抑制脂肪细胞谱系定向分化和分化,而时钟抑制因子Rev-erbα则促进这些过程。这种新发现的微调BAT产热能力的时间机制,可能在发育和功能募集过程中根据外部时间信号实现能量利用和体温调节。鉴于BAT在全身代谢稳态中的重要作用,针对时钟回路对BAT调节活性的药物干预可能为预防和治疗代谢紊乱,特别是与昼夜节律失调相关的代谢紊乱提供新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c00/4916866/16363f73e536/kadi-05-02-1082015-g001.jpg

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