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Analysis of Metabolic Pathways by Graph Transformation

机译:通过图变换分析代谢途径

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摘要

Biochemical pathways, such as metabolic, regulatory, and signal transduction pathways, constitute complex networks of functional and physical interactions between molecular species in the cell. They are represented in a natural way as graphs, with molecules as nodes and processes as arcs. In particular, metabolic pathways are represented as directed graphs, with the substrates, products, and enzymes as nodes and the chemical reactions catalyzed by the enzymes as arcs. In this paper, chemical reactions in a metabolic pathway are described by edge relabeling graph transformation rules, as explicit chemical reactions and also as implicit chemical reactions, in which the substrate chemical graph, together with a minimal set of edge relabeling operations, determines uniquely the product chemical graph. Further, the problem of constructing all pathways that can accomplish a given metabolic function of transforming a substrate chemical graph to a product chemical graph using a set of explicit chemical reactions, is stated as the problem of finding an appropriate set of sequences of chemical graph transformations from the substrate to the product, and the design of a graph transformation system for the analysis of metabolic pathways is described which is based on a database of explicit chemical reactions, a database of metabolic pathways, and a chemical graph transformation system.
机译:生化途径,例如代谢,调节和信号转导途径,构成细胞中分子种类之间功能和物理相互作用的复杂网络。它们以自然方式表示为图形,分子为节点,过程为弧。特别是,代谢途径以有向图表示,底物,产物和酶为结点,酶催化的化学反应为弧。在本文中,通过边缘重标记图转换规则将代谢途径中的化学反应描述为显式化学反应,也将其描述为隐式化学反应,其中底物化学图以及最少的一组边缘重标记操作唯一地确定了产品化学图。此外,构建能够完成通过使用一组显式化学反应将底物化学图转化为产物化学图的给定代谢功能的所有途径的问题被认为是寻找合适的化学图​​转化序列集的问题。从底物到产品,并描述了用于分析代谢途径的图形转换系统的设计,该系统基于显式化学反应的数据库,代谢途径的数据库和化学图形转换系统。

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