Durgan David J, Young Martin E
Department of Pediatrics, USDA/ARS Children's Nutrition Research Center, Baylor College of Medicine, 1100 Bates Street, Houston, TX 77030, USA.
Cardiovasc Drugs Ther. 2008 Apr;22(2):115-24. doi: 10.1007/s10557-008-6086-y.
The energetic demands imposed upon the heart vary dramatically over the course of the day. In the face of equally commanding oscillations in the neurohumoral mileu, the heart must respond both rapidly and appropriately to its diurnal environment, for the survival of the organism. A major response of the heart to alterations in workload, nutrients, and various neurohumoral stimuli is at the level of metabolism. Failure of the heart to achieve adequate metabolic adaptation results in contractile dysfunction.
Substantial evidence is accumulating which suggests that a transcriptionally based timekeeping mechanism known as the circadian clock plays a role in mediating myocardial metabolic rhythms. Here, we provide an overview of our current knowledge regarding the interplay between the circadian clock within the cardiomyocyte and myocardial metabolism. This includes a particular focus on circadian clock mediated regulation of endogenous energy stores, as well as those mechanisms orchestrating circadian rhythms in metabolic gene expression.
An essential need to elucidate fully the functions of this molecular mechanism in the heart remains.
心脏所面临的能量需求在一天中会发生显著变化。面对神经体液环境同样显著的波动,为了机体的生存,心脏必须对其昼夜环境做出快速且恰当的反应。心脏对工作负荷、营养物质及各种神经体液刺激变化的一个主要反应发生在代谢层面。心脏若无法实现充分的代谢适应,就会导致收缩功能障碍。
越来越多的大量证据表明,一种称为昼夜节律时钟的基于转录的计时机制在介导心肌代谢节律方面发挥作用。在此,我们概述了目前关于心肌细胞内的昼夜节律时钟与心肌代谢之间相互作用的认识。这特别包括对昼夜节律时钟介导的内源性能量储备调节的关注,以及那些协调代谢基因表达昼夜节律的机制。
仍然迫切需要全面阐明这种分子机制在心脏中的功能。