Ueda H R, Hagiwara M, Kitano H
ERATO Kitano Symbiotic Systems Group, Suite 6A, M31, 6-31-15 Jinguumae, Shibuya, Tokyo, 150-0001, Japan.
J Theor Biol. 2001 Jun 21;210(4):401-6. doi: 10.1006/jtbi.2000.2226.
A mechanism for generating circadian rhythms has been of major interest in recent years. After the discovery of per and tim, a model with a simple feedback loop involving per and tim has been proposed. However, it is recognized that the simple feedback model cannot account for phenotypes generated by various mutants. A recent report by Glossop, Lyons & Hardin [Science286, 766 (1999)] on Drosophila suggests involvement of another feedback loop by dClk that is interlocked with per-tim feedback loop. In order to examine whether interlocked feedback loops can be a basic mechanism for circadian rhythms, a mathematical model was created and examined. Through extensive simulation and mathematical analysis, it was revealed that the interlocked feedback model accounts for the observations that are not explained by the simple feedback model. Moreover, the interlocked feedback model has robust properties in oscillations.
近年来,昼夜节律产生机制一直是人们主要关注的问题。在发现周期基因(per)和无时间基因(tim)之后,有人提出了一个涉及per和tim的简单反馈回路模型。然而,人们认识到,这个简单的反馈模型无法解释各种突变体产生的表型。格洛索普、莱昂斯和哈丁最近在《科学》杂志上发表的一篇关于果蝇的报告表明,另一个由dClk构成的反馈回路与per-tim反馈回路相互关联。为了检验相互关联的反馈回路是否可能是昼夜节律的基本机制,我们创建并研究了一个数学模型。通过广泛的模拟和数学分析,我们发现相互关联的反馈模型能够解释简单反馈模型无法解释的观测结果。此外,相互关联的反馈模型在振荡方面具有稳健的特性。