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The Synergistic Role of Light-Feeding Phase Relations on Entraining Robust Circadian Rhythms in the Periphery

机译:进光相位关系对周围人的稳健昼夜节律的协同作用

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The feeding and fasting cycles are strong behavioral signals that entrain biological rhythms of the periphery. The feeding rhythms synchronize the activities of the metabolic organs, such as liver, synergistically with the light/dark cycle primarily entraining the suprachiasmatic nucleus. The likely phase misalignment between the feeding rhythms and the light/dark cycles appears to induce circadian disruptions leading to multiple physiological abnormalities motivating the need to investigate the mechanisms behind joint light-feeding circadian entrainment of peripheral tissues. To address this question, we propose a semimechanistic mathematical model describing the circadian dynamics of peripheral clock genes in human hepatocyte under the control of metabolic and light rhythmic signals. The model takes the synergistically acting light/dark cycles and feeding rhythms as inputs and incorporates the activity of sirtuin 1, a cellular energy sensor and a metabolic enzyme activated by nicotinamide adenine dinucleotide. The clock gene dynamics was simulated under various light-feeding phase relations and intensities, to explore the feeding entrainment mechanism as well as the convolution of light and feeding signals in the periphery. Our model predicts that the peripheral clock genes in hepatocyte can be completely entrained to the feeding rhythms, independent of the light/dark cycle. Furthermore, it predicts that light-feeding phase relationship is a critical factor in robust circadian oscillations.
机译:进食和禁食周期是强烈的行为信号,会带动周围的生物节律。进食节律与主要夹带视交叉上核的明/暗循环协同地使诸如肝脏的代谢器官的活动同步。进食节奏和明/暗周期之间可能的相位失准似乎会引起昼夜节律紊乱,从而导致多种生理异常,从而激发了对研究周围组织联合进食昼夜节律的机制的需求。为了解决这个问题,我们提出了一个半力学数学模型,该模型描述了在代谢和轻度节律信号控制下人肝细胞中外周时钟基因的昼夜节律动态。该模型以协同作用的明/暗周期和进食节奏为输入,并结合了sirtuin 1,细胞能量传感器和被烟酰胺腺嘌呤二核苷酸激活的代谢酶的活性。模拟了时钟基因动力学在各种光馈相关系和强度下的作用,以探索馈电夹带机制以及光和馈电信号在外围的卷积。我们的模型预测,肝细胞的外周时钟基因可以完全带入进食节律,而与明/暗周期无关。此外,它预测进光相位关系是鲁棒的昼夜节律振荡的关键因素。

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