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E-CELL: software environment for whole-cell simulation.

机译:E-CELL:用于全细胞模拟的软件环境。

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MOTIVATION: Genome sequencing projects and further systematic functional analyses of complete gene sets are producing an unprecedented mass of molecular information for a wide range of model organisms. This provides us with a detailed account of the cell with which we may begin to build models for simulating intracellular molecular processes to predict the dynamic behavior of living cells. Previous work in biochemical and genetic simulation has isolated well-characterized pathways for detailed analysis, but methods for building integrative models of the cell that incorporate gene regulation, metabolism and signaling have not been established. We, therefore, were motivated to develop a software environment for building such integrative models based on gene sets, and running simulations to conduct experiments in silico. RESULTS: E-CELL, a modeling and simulation environment for biochemical and genetic processes, has been developed. The E-CELL system allows a user to define functions of proteins, protein-protein interactions, protein-DNA interactions, regulation of gene expression and other features of cellular metabolism, as a set of reaction rules. E-CELL simulates cell behavior by numerically integrating the differential equations described implicitly in these reaction rules. The user can observe, through a computer display, dynamic changes in concentrations of proteins, protein complexes and other chemical compounds in the cell. Using this software, we constructed a model of a hypothetical cell with only 127 genes sufficient for transcription, translation, energy production and phospholipid synthesis. Most of the genes are taken from Mycoplasma genitalium, the organism having the smallest known chromosome, whose complete 580 kb genome sequence was determined at TIGR in 1995. We discuss future applications of the E-CELL system with special respect to genome engineering. AVAILABILITY: The E-CELL software is available upon request. SUPPLEMENTARY INFORMATION: The complete list of rules of the developed cell model with kinetic parameters can be obtained via our web site at: http://e-cell.org/.
机译:动机:基因组测序项目以及对完整基因集的进一步系统功能分析,正在为各种模式生物提供前所未有的分子信息质量。这为我们提供了有关细胞的详细说明,我们可以开始使用它们来构建模型,以模拟细胞内分子过程来预测活细胞的动态行为。以前在生物化学和基因模拟中的工作已经隔离了特征明确的途径进行详细分析,但是尚未建立用于构建整合基因调节,代谢和信号传导的细胞整合模型的方法。因此,我们有动力开发一种软​​件环境,以基于基因集构建此类整合模型,并运行模拟来进行计算机模拟实验。结果:已开发出E-CELL,一个用于生化和遗传过程的建模和仿真环境。 E-CELL系统允许用户定义蛋白质的功能,蛋白质与蛋白质的相互作用,蛋白质与DNA的相互作用,基因表达的调节以及细胞代谢的其他功能,作为一组反应规则。 E-CELL通过数字积分这些反应规则中隐式描述的微分方程来模拟细胞行为。用户可以通过计算机显示器观察细胞中蛋白质,蛋白质复合物和其他化合物浓度的动态变化。使用该软件,我们构建了一个仅具有127个基因的假想细胞模型,足以进行转录,翻译,能量产生和磷脂合成。大多数基因取自生殖道支原体(Mycoplasma genitalium),其是已知染色体最小的生物,1995年TIGR确定了其完整的580 kb基因组序列。我们讨论E-CELL系统在基因组工程设计方面的未来应用。可用性:可根据要求提供E-CELL软件。补充信息:可以通过我们的网站(http://e-cell.org/)获得带有动力学参数的已开发细胞模型规则的完整列表。

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