首页> 美国卫生研究院文献>Frontiers in Physiology >Research Topic: From structural to molecular systems biology: experimental and computational approaches to unravel mechanisms of kinase activity regulation in cancer and neurodegeneration: Boolean Model of Yeast Apoptosis as a Tool to Study Yeast and Human Apoptotic Regulations
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Research Topic: From structural to molecular systems biology: experimental and computational approaches to unravel mechanisms of kinase activity regulation in cancer and neurodegeneration: Boolean Model of Yeast Apoptosis as a Tool to Study Yeast and Human Apoptotic Regulations

机译:研究主题:从结构生物学到分子系统生物学:揭示癌症和神经变性中激酶活性调节机制的实验和计算方法:酵母细胞凋亡布尔模型作为研究酵母和人类细胞凋亡调控的工具

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摘要

Programmed cell death (PCD) is an essential cellular mechanism that is evolutionary conserved, mediated through various pathways and acts by integrating different stimuli. Many diseases such as neurodegenerative diseases and cancers are found to be caused by, or associated with, regulations in the cell death pathways. Yeast Saccharomyces cerevisiae, is a unicellular eukaryotic organism that shares with human cells components and pathways of the PCD and is therefore used as a model organism. Boolean modeling is becoming promising approach to capture qualitative behavior and describe essential properties of such complex networks. Here we present large literature-based and to our knowledge first Boolean model that combines pathways leading to apoptosis (a type of PCD) in yeast. Analysis of the yeast model confirmed experimental findings of anti-apoptotic role of Bir1p and pro-apoptotic role of Stm1p and revealed activation of the stress protein kinase Hog proposing the maximal level of activation upon heat stress. In addition we extended the yeast model and created an in silico humanized yeast in which human pro- and anti-apoptotic regulators Bcl-2 family and Valosin-contain protein (VCP) are included in the model. We showed that accumulation of Bax in silico humanized yeast shows apoptotic markers and that VCP is essential target of Akt Signaling. The presented Boolean model provides comprehensive description of yeast apoptosis network behavior. Extended model of humanized yeast gives new insights of how complex human disease like neurodegeneration can initially be tested.
机译:程序性细胞死亡(PCD)是一种重要的细胞机制,在进化上是保守的,通过各种途径介导,并通过整合不同的刺激而起作用。发现许多疾病,例如神经退行性疾病和癌症,是由细胞死亡途径的调控引起或与之相关。酿酒酵母是一种单细胞真核生物,与人细胞成分和PCD途径共享,因此被用作模型生物。布尔建模正成为捕获定性行为并描述此类复杂网络的基本属性的有前途的方法。在这里,我们介绍大量基于文献的知识模型,该模型结合了导致酵母中细胞凋亡(一种PCD类型)的途径。酵母模型的分析证实了Bir1p的抗凋亡作用和Stm1p的促凋亡作用的实验发现,并揭示了应激蛋白激酶Hog的激活,提出了热应激时的最大激活水平。此外,我们扩展了酵母模型,并创建了计算机化的人源化酵母,其中模型中包括了人类促凋亡和抗凋亡调节因子Bcl-2家族和含Valosin的蛋白质(VCP)。我们表明,Bax在计算机人源化酵母中的积累显示出凋亡标记,而VCP是Akt信号转导的重要靶标。提出的布尔模型提供了酵母细胞凋亡网络行为的全面描述。人源化酵母的扩展模型为如何初步检测复杂的人类疾病(如神经变性)提供了新见解。

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