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Biochemical systems analysis of genome-wide expression data.

机译:全基因组表达数据的生化系统分析。

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MOTIVATION: Modern methods of genomics have produced an unprecedented amount of raw data. The interpretation and explanation of these data constitute a major, well-recognized challenge. RESULTS: Biochemical Systems Theory (BST) is the mathematical basis of a well-established methodological framework for analyzing networks of biochemical reactions. An existing BST model of yeast glycolysis is used here to explain and interpret the glycolytic gene expression pattern of heat shocked yeast. Our analysis demonstrates that the observed gene expression profile satisfies the primary goals of increased ATP, trehalose, and NADPH production, while maintaining intermediate metabolites at reasonable levels. Based on a systematic exploration of alternative, hypothetical expression profiles, we show that the observed profile outperforms other profiles. Conclusion: BST is a useful framework for combining DNA microarray data with enzymatic process information to yield new insights into metabolic pathway regulation. AVAILABILITY: All analyses were executed with the software PLAS(Copyright), which is freely available at http://correio.cc.fc.ul.pt/~aenf/plas.html for academic use. CONTACT: VoitEO
机译:动机:现代的基因组学方法产生了前所未有的原始数据。这些数据的解释和解释构成了一个重要的,公认的挑战。结果:生化系统理论(BST)是建立完善的用于分析生化反应网络的方法框架的数学基础。这里使用现有的酵母糖酵解BST模型来解释和解释热激酵母的糖酵解基因表达模式。我们的分析表明,观察到的基因表达谱满足增加ATP,海藻糖和NADPH产量的主要目标,同时将中间代谢物保持在合理水平。基于对备选假设表达谱的系统研究,我们显示观察到的谱优于其他谱。结论:BST是一个有用的框架,可将DNA微阵列数据与酶促过程信息相结合,以提供有关代谢途径调控的新见解。可用性:所有分析均使用软件PLAS(版权所有)执行,该软件可从http://correio.cc.fc.ul.pt/~aenf/plas.html免费获得,以供学术使用。联系人:VoitEO

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