Lee Sang Yup, Lee Dong-Yup, Hong Soon Ho, Kim Tae Yong, Yun Hongsoek, Oh Young-Gyun, Park Sunwon
Metabolic and Biomolecular Engineering National Research Laboratory, Korea Advanced Institute of Science and Technology, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Genome Inform. 2003;14:23-33.
We have developed MetaFluxNet which is a stand-alone program package for the management of metabolic reaction information and quantitative metabolic flux analysis. It allows users to interpret and examine metabolic behavior in response to genetic and/or environmental modifications. As a result, quantitative in silico simulations of metabolic pathways can be carried out to understand the metabolic status and to design the metabolic engineering strategies. The main features of the program include a well-developed model construction environment, user-friendly interface for metabolic flux analysis (MFA), comparative MFA of strains having different genotypes under various environmental conditions, and automated pathway layout creation. The usefulness and functionality of the program are demonstrated by applying to metabolic pathways in E. coli. First, a large-scale in silico E. coli model is constructed using MetaFluxNet, and then the effects of carbon sources on intracellular flux distributions and succinic acid production were investigated on the basis of the uptake and secretion rates of the relevant metabolites. The results indicated that among three carbon sources available, the most reduced substrate is sorbitol which yields efficient succinic acid production. The software can be downloaded from http://mbel.kaist.ac.kr/.
我们开发了MetaFluxNet,它是一个独立的程序包,用于管理代谢反应信息和进行定量代谢通量分析。它允许用户解释和检查代谢行为对遗传和/或环境改变的响应。因此,可以进行代谢途径的定量计算机模拟,以了解代谢状态并设计代谢工程策略。该程序的主要特点包括一个完善的模型构建环境、用于代谢通量分析(MFA)的用户友好界面、在各种环境条件下对不同基因型菌株的比较MFA以及自动创建途径布局。通过应用于大肠杆菌的代谢途径,证明了该程序的实用性和功能。首先,使用MetaFluxNet构建了一个大规模的计算机模拟大肠杆菌模型,然后根据相关代谢物的摄取和分泌速率,研究了碳源对细胞内通量分布和琥珀酸产量的影响。结果表明,在可用的三种碳源中,还原性最强的底物是山梨醇,它能有效产生琥珀酸。该软件可从http://mbel.kaist.ac.kr/下载。