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A general map of iron metabolism and tissue-specific subnetworks

机译:铁代谢和组织特异性子网络的一般图谱

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摘要

Iron is required for survival of mammalian cells. Recently, understanding of iron metabolism and trafficking has increased dramatically, revealing a complex, interacting network largely unknown just a few years ago. This provides an excellent model for systems biology development and analysis. The first step in such an analysis is the construction of a structural network of iron metabolism, which we present here. This network was created using CellDesigner version 3.5.2 and includes reactions occurring in mammalian cells of numerous tissue types. The iron metabolic network contains 151 chemical species and 107 reactions and transport steps. Starting from this general model, we construct iron networks for specific tissues and cells that are fundamental to maintaining body iron homeostasis. We include subnetworks for cells of the intestine and liver, tissues important in iron uptake and storage, respectively, as well as the reticulocyte and macrophage, key cells in iron utilization and recycling. The addition of kinetic information to our structural network will permit the simulation of iron metabolism in different tissues as well as in health and disease.
机译:铁是哺乳动物细胞存活所必需的。最近,人们对铁代谢和铁贩运的了解急剧增加,揭示了一个复杂的、相互作用的网络,而就在几年前,这个网络在很大程度上是未知的。这为系统生物学的开发和分析提供了一个很好的模型。这种分析的第一步是构建我们在这里介绍的铁代谢结构网络。该网络是使用CellDesigner版本3.5.2创建的,包括在多种组织类型的哺乳动物细胞中发生的反应。铁代谢网络包含 151 种化学物质和 107 个反应和转运步骤。从这个通用模型开始,我们为特定的组织和细胞构建铁网络,这些组织和细胞是维持身体铁稳态的基础。我们包括肠细胞和肝脏细胞的子网络,分别在铁的摄取和储存中很重要的组织,以及网织红细胞和巨噬细胞,铁利用和循环中的关键细胞。将动力学信息添加到我们的结构网络中将允许模拟不同组织以及健康和疾病中的铁代谢。

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