WinBEST-KIT用于分析多层和多细胞系统

Tatsuya Sekiguchi, M. Okamoto
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引用次数: 1

摘要

在此之前,我们开发了一个生化反应模拟器,名为WinBEST-KIT(生化工程系统分析工具包,在微软Windows下运行),用于分析复杂的代谢途径。WinBEST-KIT为代谢工程实验研究人员提供了一个集成的仿真环境。WinBEST-KIT的一个特别显著的特性是用户可以很容易地在图形用户界面中定义和自定义反应符号。除了预先安装的标准动力学方程外,用户可以使用自己的原始动力学方程来表示未知的动力学机制作为反应步骤。然而,由于在代谢途径中要分析的反应系统的规模越来越大,必须将大规模的反应系统划分为几个任意的区室反应系统,并且需要多层分层表示等方法来描述区室反应系统之间的相互作用。因此,在本研究中,我们开发了一个新版本的WinBEST-KIT,使用户能够将几个任意的反应方案构建为层,并将层连接起来,并分析它们之间的相互作用。这种分层表示对于构建生物化学系统(如基因组-酶-代谢物系统、反应级联系统和多细胞系统)的多层数学模型是有效的。
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WinBEST-KIT for analyzing multilayer and multicellular systems
Previously, we developed a biochemical reaction simulator called WinBEST-KIT (Biochemical Engineering System analyzing Tool-KIT, which runs under Microsoft Windows) for analyzing complicated metabolic pathways. WinBEST-KIT provides an integrated simulation environment for experimental researchers in metabolic engineering. A particularly notable feature of WinBEST-KIT is that users can easily define and customize reaction symbols in the graphical user interface. Users can use their original kinetic equations, in addition to the pre-installed standard kinetic equations, to represent unknown kinetic mechanisms as reaction steps. However, owing to the increasing size of reaction systems to be analyzed in metabolic pathways, large-scale reaction systems must be divided into several arbitrary compartmental reaction systems and procedures are needed, such as multilayered hierarchical representation, to describe the interactions between the compartmental reaction systems. Accordingly, in this study, we developed a new version of WinBEST-KIT that enables users to construct several arbitrary reaction schemes as layers, to connect the layers, and to analyze the interactions between them. This hierarchical representation is effective for constructing multilayered mathematical models of biochemical systems, such as genome-enzyme-metabolite systems, reaction cascade systems, and multicellular systems.
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