首页> 外文期刊>Journal of Bioinformatics and Computational Biology >A NEW REGULATORY INTERACTION SUGGESTED BY SIMULATIONS FOR CIRCADIAN GENETIC CONTROL MECHANISM IN MAMMALS
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A NEW REGULATORY INTERACTION SUGGESTED BY SIMULATIONS FOR CIRCADIAN GENETIC CONTROL MECHANISM IN MAMMALS

机译:通过模拟为哺乳动物的后CAD遗传控制机制提出了一种新的调控相互作用。

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Knowledge of molecular biological systems is increasing at an amazing pace. It is becoming harder to intuitively evaluate the significance of each interaction between the molecules of the complex biological systems. Hence, we need to develop an efficient computational method to explore the biological mechanisms. In this study, we employed a hybrid functional Petri net in order to analyze mammalian circadian genetic control mechanisms, which consists of feedback loops of clock genes and generates endogenous near 24 h rhythms in mammals. We constructed a computational model based on the available biological data, and by using Genomic Object Net, we performed computer simulations of the time courses of clock gene transcription and translation. Although the original model successfully reproduced most of the circadian genetic control mechanisms, two discrepancies remained despite a wide selection of the parameters. We found that addition of a hypothetical path into the original model result in successful simulation of time courses and phase relationships among clock genes. This also demonstrates the usefulness of the hybrid functional Petri net approach to biological systems.
机译:分子生物学系统的知识正在以惊人的速度增长。直观地评估复杂生物系统分子之间每个相互作用的重要性变得越来越困难。因此,我们需要开发一种有效的计算方法来探索生物学机制。在这项研究中,我们采用了一种混合功能Petri网来分析哺乳动物昼夜节律的遗传控制机制,该机制由时钟基因的反馈环组成,并在哺乳动物中产生内源性的近24小时节律。我们基于可用的生物学数据构建了一个计算模型,并使用Genomic Object Net对时钟基因转录和翻译的时程进行了计算机模拟。尽管原始模型成功复制了大多数生物钟的遗传控制机制,但尽管参数选择范围广,但仍存在两个差异。我们发现,将假想路径添加到原始模型中会成功模拟时基和时钟基因之间的相位关系。这也证明了混合功能Petri网方法对生物系统的有用性。

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