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首页> 外文期刊>Briefings in functional genomics >Applications of system-level models ofmetabolismfor analysis of bacterial physiology and identification of new drug targets
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Applications of system-level models ofmetabolismfor analysis of bacterial physiology and identification of new drug targets

机译:系统级代谢模型在细菌生理分析和新药靶点识别中的应用

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For nearly all of the 20th century, biologists gained considerable insights into the fundamental principles of cellular dynamics by examining select modules of biochemical processes.This form of analysis provides detailed information about the workings of the examined pathways. However, any attempt to alter the normal function of bacteria (perhaps for industrial or medicinal goals) requires a detailed global understanding of cellular mechanisms. The reductionist mode of analysis cannot provide the required information for developing the needed perspective on the complex interactions of biochemical pathways. Thankfully, the increasing availability of microbial genomic, transcriptomic,proteomic and other high-throughput data permits system-level analyses of microbiology. During the past two decades, systems biologists have developed constraint-based genome-scale models (GSM) of metabolism for a variety of pathogens. These models are important tools for assessing the metabolic capabilities of various genotypes.Simultaneously, new computational methods have been developed that use these network reconstructions to answer an array of important immunological questions. The objective of this article is to briefly review some of the uses of GSMs for studying bacterial metabolism under different conditions and to discuss how the calculated solutions can be used for rational design of drugs.
机译:在几乎整个20世纪,生物学家通过检查生化过程的选定模块,对细胞动力学的基本原理有了相当深入的了解。这种分析形式提供了有关所检查途径工作方式的详细信息。但是,任何改变细菌正常功能的尝试(可能出于工业或医学目的)都需要对细胞机制有全面的了解。还原论的分析模式无法提供所需的信息,从而无法就生化途径的复杂相互作用建立所需的观点。值得庆幸的是,微生物基因组,转录组学,蛋白质组学和其他高通量数据的可用性不断提高,可以对微生物学进行系统级分析。在过去的二十年中,系统生物学家为各种病原体开发了基于约束的新陈代谢基因组规模模型(GSM)。这些模型是评估各种基因型代谢能力的重要工具。同时,已经开发出新的计算方法,这些方法使用这些网络重构来回答一系列重要的免疫学问题。本文的目的是简要回顾GSM在不同条件下研究细菌代谢的一些用途,并讨论如何将计算出的溶液用于药物的合理设计。

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