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BioMet 工具包:代谢的全基因组分析。

BioMet Toolbox: genome-wide analysis of metabolism.

机构信息

Department of Chemical and Biological Engineering, Chalmers University of Technology, Göteborg, Sweden.

出版信息

Nucleic Acids Res. 2010 Jul;38(Web Server issue):W144-9. doi: 10.1093/nar/gkq404. Epub 2010 May 18.

Abstract

The rapid progress of molecular biology tools for directed genetic modifications, accurate quantitative experimental approaches, high-throughput measurements, together with development of genome sequencing has made the foundation for a new area of metabolic engineering that is driven by metabolic models. Systematic analysis of biological processes by means of modelling and simulations has made the identification of metabolic networks and prediction of metabolic capabilities under different conditions possible. For facilitating such systemic analysis, we have developed the BioMet Toolbox, a web-based resource for stoichiometric analysis and for integration of transcriptome and interactome data, thereby exploiting the capabilities of genome-scale metabolic models. The BioMet Toolbox provides an effective user-friendly way to perform linear programming simulations towards maximized or minimized growth rates, substrate uptake rates and metabolic production rates by detecting relevant fluxes, simulate single and double gene deletions or detect metabolites around which major transcriptional changes are concentrated. These tools can be used for high-throughput in silico screening and allows fully standardized simulations. Model files for various model organisms (fungi and bacteria) are included. Overall, the BioMet Toolbox serves as a valuable resource for exploring the capabilities of these metabolic networks. BioMet Toolbox is freely available at www.sysbio.se/BioMet/.

摘要

分子生物学工具的快速发展,用于定向基因修饰的精确定量实验方法,高通量测量,以及基因组测序的发展,为代谢工程的一个新领域奠定了基础,这个新领域由代谢模型驱动。通过建模和模拟对生物过程进行系统分析,使得代谢网络的识别和不同条件下代谢能力的预测成为可能。为了促进这种系统分析,我们开发了 BioMet Toolbox,这是一个基于网络的资源,用于代谢物分析和转录组和相互作用组数据的整合,从而利用基因组规模代谢模型的功能。BioMet Toolbox 提供了一种有效的用户友好的方法,可以通过检测相关通量来执行最大化或最小化生长速率、底物摄取速率和代谢产物生成速率的线性规划模拟,模拟单基因和双基因缺失,或检测主要转录变化集中的代谢物。这些工具可用于高通量的计算机筛选,并允许完全标准化的模拟。包括了各种模型生物(真菌和细菌)的模型文件。总的来说,BioMet Toolbox 是探索这些代谢网络功能的有价值的资源。BioMet Toolbox 可免费在 www.sysbio.se/BioMet/ 获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/214c/2896146/40cad25e2013/gkq404f1.jpg

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