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The Per2 Negative Feedback Loop Sets the Period in the Mammalian Circadian Clock Mechanism

机译:Per2负反馈回路设置哺乳动物昼夜节律机制中的周期

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摘要

Processes that repeat in time, such as the cell cycle, the circadian rhythm, and seasonal variations, are prevalent in biology. Mathematical models can represent our knowledge of the underlying mechanisms, and numerical methods can then facilitate analysis, which forms the foundation for a more integrated understanding as well as for design and intervention. Here, the intracellular molecular network responsible for the mammalian circadian clock system was studied. A new formulation of detailed sensitivity analysis is introduced and applied to elucidate the influence of individual rate processes, represented through their parameters, on network functional characteristics. One of four negative feedback loops in the model, the Per2 loop, was uniquely identified as most responsible for setting the period of oscillation; none of the other feedback loops were found to play as substantial a role. The analysis further suggested that the activity of the kinases CK1δ and CK1ɛ were well placed within the network such that they could be instrumental in implementing short-term adjustments to the period in the circadian clock system. The numerical results reported here are supported by previously published experimental data.
机译:时间重复的过程,例如细胞周期,昼夜节律和季节性变化,在生物学中很普遍。数学模型可以表示我们对基本机制的知识,然后数值方法可以促进分析,这为更全面的理解以及设计和干预奠定了基础。在这里,研究了负责哺乳动物生物钟系统的细胞内分子网络。引入了一种新的详细灵敏度分析公式,并将其应用于阐明通过速率参数表示的各个速率过程对网络功能特性的影响。模型中的四个负反馈回路之一,Per2回路,被唯一确定为最负责设定振荡周期的回路。没有其他反馈回路被发现发挥重要作用。分析还表明,激酶CK1δ和CK1ɛ的活性很好地位于网络内,因此它们可能有助于对生物钟系统的周期进行短期调整。此处报告的数值结果得到先前发布的实验数据的支持。

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