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Potential Roles of Dec and Bmal1 Genes in Interconnecting Circadian Clock and Energy Metabolism

机译:Dec和Bmal1基因在昼夜节律和能量代谢相互联系中的潜在作用

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摘要

The daily rhythm of mammalian energy metabolism is subject to the circadian clock system, which is made up of the molecular clock machinery residing in nearly all cells throughout the body. The clock genes have been revealed not only to form the molecular clock but also to function as a mediator that regulates both circadian and metabolic functions. While the circadian signals generated by clock genes produce metabolic rhythms, clock gene function is tightly coupled to fundamental metabolic processes such as glucose and lipid metabolism. Therefore, defects in the clock genes not only result in the dysregulation of physiological rhythms but also induce metabolic disorders including diabetes and obesity. Among the clock genes, Dec1 (Bhlhe40/Stra13/Sharp2), Dec2 (Bhlhe41/Sharp1), and Bmal1 (Mop3/Arntl) have been shown to be particularly relevant to the regulation of energy metabolism at the cellular, tissue, and organismal levels. This paper reviews our current knowledge of the roles of Dec1, Dec2, and Bmal1 in coordinating the circadian and metabolic pathways.
机译:哺乳动物能量代谢的每日节律受昼夜节律系统的影响,昼夜节律系统由几乎遍布人体所有细胞的分子钟机制组成。已经揭示了时钟基因不仅形成分子时钟,而且还起调节昼夜和代谢功能的介体的作用。当时钟基因产生的生物钟信号产生代谢节律时,时钟基因的功能与基本的代谢过程紧密结合,例如葡萄糖和脂质代谢。因此,时钟基因的缺陷不仅导致生理节律失调,而且还引起包括糖尿病和肥胖症在内的代谢疾病。在时钟基因中,已显示Dec1(Bhlhe40 / Stra13 / Sharp2),Dec2(Bhlhe41 / Sharp1)和Bmal1(Mop3 / Arntl)与细胞,组织和生物体水平的能量代谢调节特别相关。本文回顾了我们目前对Dec1,Dec2和Bmal1在协调昼夜节律和代谢途径中的作用的认识。

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