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A mathematical model of microbial folate biosynthesis and utilisation: Implications for antifolate development.

机译:微生物叶酸生物合成和利用的数学模型:对叶酸发展的启示。

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摘要

The metabolic biochemistry of folate biosynthesis and utilisation has evolved into a complex network of reactions. Although this complexity represents challenges to the field of folate research it has also provided a renewed source for antimetabolite targets. A range of improved folate chemotherapy continues to be developed and applied particularly to cancer and chronic inflammatory diseases. However, new or better antifolates against infectious diseases remain much more elusive. In this paper we describe the assembly of a generic deterministic mathematical model of microbial folate metabolism. Our aim is to explore how a mathematical model could be used to explore the dynamics of this inherently complex set of biochemical reactions. Using the model it was found that: (1) a particular small set of folate intermediates are overrepresented, (2) inhibitory profiles can be quantified by the level of key folate products, (3) using the model to scan for the most effective combinatorial inhibitions of folate enzymes we identified specific targets which could complement current antifolates, and (4) the model substantiates the case for a substrate cycle in the folinic acid biosynthesis reaction. Our model is coded in the systems biology markup language and has been deposited in the BioModels Database (MODEL1511020000), this makes it accessible to the community as a whole.
机译:叶酸生物合成和利用的代谢生物化学已经发展成为一个复杂的反应网络。尽管这种复杂性对叶酸研究领域提出了挑战,但它也为抗代谢目标提供了新的来源。不断开发出一系列改良的叶酸化学疗法,并将其特别应用于癌症和慢性炎症性疾病。然而,针对传染病的新型或更好的抗叶酸药物仍然难以捉摸。在本文中,我们描述了微生物叶酸代谢的通用确定性数学模型的组装。我们的目的是探索如何使用数学模型来探索这种内在复杂的生化反应集的动力学。使用该模型发现:(1)特定的一小类叶酸中间体被过量代表;(2)可以通过关键叶酸产物的水平来量化抑制谱;(3)使用该模型扫描最有效的组合对叶酸酶的抑制作用,我们确定了可以补充当前抗叶酸剂的特定靶标,并且(4)该模型证实了亚叶酸生物合成反应中底物循环的情况。我们的模型以系统生物学标记语言编码,并已保存在BioModels数据库(MODEL1511020000)中,这使得整个社区都可以访问。

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