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基于扩展混合功能Petri网的具有MicroRNAs双负反馈环的味觉神经元细胞命运模拟模型

Cell fate simulation model of gustatory neurons with MicroRNAs double-negative feedback loop by hybrid functional Petri net with extension.

作者信息

Saito Ayumu, Nagasaki Masao, Doi Atushi, Ueno Kazuko, Miyano Satoru

机构信息

Human Genome Center, Institute of Medical Science, University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.

出版信息

Genome Inform. 2006;17(1):100-11.

Abstract

Biological regulatory networks have been extensively researched. Recently, the microRNA regulation has been analyzed and its importance has increasingly emerged. We have applied the Hybrid Functional Petri net with extension (HFPNe) model and succeeded in creating model biological pathways, e.g. metabolic pathways, gene regulatory networks, cell signaling networks, and cell-cell interaction models with one of the HFPNe implementations Cell Illustrator. Thus, we have applied HFPNe to model regulatory networks that involve a new key regulator microRNA. As a test case, we selected the cell fate determination model of two gustatory neurons of Caenorhabditis elegans-ASE left (ASEL) and ASE right (ASER). These neurons are morphologically bilaterally symmetric but physically asymmetric in function. Johnston et al. have suggested that their cell fate is determined by the double-negative feedback loop involving the lsy-6 and mir-273 microRNAs. Our simulation model confirms their hypothesis. In addition, other well-known mutants that are related with the double-negative feedback loop are also well-modeled. The new upstream regulator of lsy-6 (lsy-2) that is mentioned in another paper is also integrated into this model for the mechanism of switching between ASEL and ASER without any contradictions. Therefore, the HFPNe-based modeling will be one of the promising modeling methods and simulation architectures that illustrate microRNA regulatory networks.

摘要

生物调控网络已得到广泛研究。最近,对微小RNA调控进行了分析,其重要性日益显现。我们应用了扩展混合功能Petri网(HFPNe)模型,并成功创建了模型生物途径,例如代谢途径、基因调控网络、细胞信号网络以及使用HFPNe实现之一的Cell Illustrator构建的细胞间相互作用模型。因此,我们应用HFPNe对涉及新的关键调节因子微小RNA的调控网络进行建模。作为一个测试案例,我们选择了秀丽隐杆线虫的两个味觉神经元——ASE左(ASEL)和ASE右(ASER)的细胞命运决定模型。这些神经元在形态上是双侧对称的,但在功能上是物理不对称的。约翰斯顿等人提出它们的细胞命运由涉及lsy - 6和mir - 273微小RNA的双负反馈回路决定。我们的模拟模型证实了他们的假设。此外,与双负反馈回路相关的其他著名突变体也得到了很好的建模。另一篇论文中提到的lsy - 6的新上游调节因子(lsy - 2)也被整合到该模型中,用于ASEL和ASER之间切换的机制,且没有任何矛盾之处。因此,基于HFPNe的建模将是阐明微小RNA调控网络的有前景的建模方法和模拟架构之一。

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