Eckel-Mahan Kristin, Sassone-Corsi Paolo
Department of Pharmacology, University of California, Irvine, USA.
Nat Struct Mol Biol. 2009 May;16(5):462-7. doi: 10.1038/nsmb.1595.
Circadian rhythms govern a wide variety of physiological and metabolic functions in most organisms. At the heart of these regulatory pathways in mammals is the clock machinery, a remarkably coordinated transcription-translation system that relies on dynamic changes in chromatin states. Recent findings indicate that regulation also goes the other way, as specific elements of the clock can sense changes in cellular metabolism. Understanding in full detail the intimate links between cellular metabolism and the circadian clock machinery will provide not only crucial insights into system physiology but also new avenues toward pharmacological intervention of metabolic disorders.
昼夜节律控制着大多数生物体中各种各样的生理和代谢功能。在哺乳动物这些调节途径的核心是生物钟机制,这是一个高度协调的转录-翻译系统,它依赖于染色质状态的动态变化。最近的研究结果表明,调节也是双向的,因为生物钟的特定元件可以感知细胞代谢的变化。全面详细地了解细胞代谢与生物钟机制之间的密切联系,不仅将为系统生理学提供关键见解,还将为代谢紊乱的药物干预开辟新途径。