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Weak coupling between intracellular feedback loops explains dissociation of clock gene dynamics

机译:细胞内反馈回路之间的弱耦合解释了时钟基因动力学的解离

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摘要

Circadian rhythms are generated by interlocked transcriptional-translational negative feedback loops (TTFLs), the molecular process implemented within a cell. The contributions, weighting and balancing between the multiple feedback loops remain debated. Dissociated, free-running dynamics in the expression of distinct clock genes has been described in recent experimental studies that applied various perturbations such as slice preparations, light pulses, jet-lag, and culture medium exchange. In this paper, we provide evidence that this “presumably transient” dissociation of circadian gene expression oscillations may occur at the single-cell level. Conceptual and detailed mechanistic mathematical modeling suggests that such dissociation is due to a weak interaction between multiple feedback loops present within a single cell. The dissociable loops provide insights into underlying mechanisms and general design principles of the molecular circadian clock.
机译:昼夜节律是由连锁的转录-翻译负反馈环(TTFL)产生的,TTFL是在细胞内实施的分子过程。多个反馈回路之间的贡献,加权和平衡仍在争论中。在最近的实验研究中已经描述了不同时钟基因表达中的分离,自由运行动力学,该研究应用了各种扰动,例如切片准备,光脉冲,时差和培养基交换。在本文中,我们提供了证据,昼夜节律基因表达振荡的这种“可能是瞬时的”解离可能发生在单细胞水平上。概念和详细的机理数学建模表明,这种解离是由于单个单元内存在的多个反馈回路之间的相互作用较弱。可分离的环提供了对分子生物钟的潜在机制和一般设计原理的见识。

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