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ON THE RECONSTRUCTION OF THE MUS MUSCULUS GENOMESCALE METABOLIC NETWORK MODEL

机译:关于亩肌肉的重构基因组评估代谢网络模型

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Genome-scale metabolic modeling is a systems-based approach that attempts to capture the metabolic complexity of the whole cell, for the purpose of gaining insight into metabolic function and regulation. This is achieved by organizing the metabolic components and their corresponding interactions into a single context. The reconstruction process is a challenging and laborious task, especially during the stage of manual curation. For the mouse genome-scale metabolic model, however, we were able to rapidly reconstruct a compartmentalized model from well-curated metabolic databases online. The prototype model was comprehensive. Apart from minor compound naming and compartmentalization issues, only nine additional reactions without gene associations were added during model curation before the model was able to simulate growth in silico. Further curation led to a metabolic model that consists of 1399 genes mapped to 1757 reactions, with a total of 2037 reactions compartmentalized into the cytoplasm and mitochondria, capable of reproducing metabolic functions inferred from literatures. The reconstruction is made more tractable by developing a formal system to update the model against online databases. Effectively, we can focus our curation efforts into establishing better model annotations and gene–protein–reaction associations within the core metabolism, while relying on genome and proteome databases to build new annotations for peripheral pathways, which may bear less relevance to our modeling interest.
机译:基因组规模代谢模型是基于系统的方法,试图捕获整个细胞的代谢的复杂性,深入了解代谢功能和调节的目的。这是通过组织代谢成分和它们的相应的相互作用到一个单一的上下文实现。重建过程是一项具有挑战性的和费力的任务,特别是在人工管理的阶段。对于小鼠基因组规模代谢模型,但是,我们能够快速的在线重建精心策划的代谢数据库条块模式。该样机模型是全面的。除了次化合物的命名和条块分割的问题,模型策展过程中添加的只有九个没有基因关联额外反应的模型能够在硅片模拟增长之前。导致了由映射到1757个反应1399个基因,总的2037和反应室化到细胞质和线粒体中,能够再现从文献推断代谢功能的代谢模型进一步策。重建是由通过开发一个正式的系统更新对在线数据库模型更容易处理。实际上,我们可以关注我们的策展工作进入核心代谢中建立更好的模型注释和基因蛋白反应的关联,同时依靠基因组和蛋白质组数据库搭建外围的途径,它可以承担更少的我们的建模利益相关的新注解。

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