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In silico method for modelling metabolism and gene product expression at genome scale

机译:在基因组规模上模拟代谢和基因产物表达的计算机模拟方法

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Transcription and translation use raw materials and energy generated metabolically to create the macromolecular machinery responsible for all cellular functions, including metabolism. A biochemically accurate model of molecular biology and metabolism will facilitate comprehensive and quantitative computations of an organism's molecular constitution as a function of genetic and environmental parameters. Here we formulate a model of metabolism and macromolecular expression. Prototyping it using the simple microorganism Thermotoga maritima, we show our model accurately simulates variations in cellular composition and gene expression. Moreover, through in silico comparative transcriptomics, the model allows the discovery of new regulons and improving the genome and transcription unit annotations. Our method presents a framework for investigating molecular biology and cellular physiology in silico and may allow quantitative interpretation of multi-omics data sets in the context of an integrated biochemical description of an organism.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:转录和翻译利用代谢产生的原料和能量来创造负责所有细胞功能(包括新陈代谢)的大分子机器。分子生物学和新陈代谢的生物化学精确模型将有助于根据遗传和环境参数对生物分子组成进行全面和定量的计算。在这里,我们制定了新陈代谢和大分子表达的模型。使用简单的微生物Maritotoga maritima对其进行原型制作,我们展示了我们的模型可以准确地模拟细胞组成和基因表达的变化。此外,通过计算机比较转录组学,该模型可以发现新的调节子并改善基因组和转录单位注释。我们的方法提供了一个研究分子生物学和计算机生物学的框架,并且可能允许在有机体的综合生化描述的背景下对多组学数据集进行定量解释。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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