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Metabolomics and systems pharmacology: why and how to model the human metabolic network for drug discovery

机译:代谢组学和系统药理学:为什么以及如何为药物代谢建立人类代谢网络模型

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摘要

Metabolism represents the 'sharp end' of systems biology, because changes in metabolite are necessarily amplified relative to changes in the transcriptome, proteome and enzyme activities, which can be modulated by drugs. To understand such behaviour, we therefore need (and increasingly have) reliable consensus (community) models of the human metabolic network that include the important transporters. Small molecule 'drug' transporters are in fact metabolite transporters, because drugs bear structural similarities to metabolites known from the network reconstructions and from measurements of the metabolome. Recon2 represents the present state-of-the-art human metabolic network reconstruction; it can predict inter alia: (i) the effects of inborn errors of metabolism; (ii) which metabolites are exometabolites, and (iii) how metabolism varies between tissues and cellular compartments. However, even these qualitative network models are not yet complete. As our understanding improves so do we recognise more clearly the need for a systems (poly)pharmacology.
机译:代谢代表了系统生物学的“尖锐末端”,因为代谢产物的变化必然会相对于转录组,蛋白质组和酶活性的变化而被放大,这些变化可以被药物调节。为了理解这种行为,我们因此需要(并且越来越具有)人类代谢网络的可靠共识(社区)模型,其中包括重要的转运蛋白。小分子“药物”转运蛋白实际上是代谢物转运蛋白,因为药物与从网络重建和代谢组学测定中已知的代谢物具有结构相似性。 Recon2代表了当前最先进的人类代谢网络重建。它尤其可以预测:(i)先天性代谢错误的影响; (ii)哪些代谢物是代谢物,以及(iii)新陈代谢在组织和细胞区室之间如何变化。但是,即使这些定性网络模型尚未完成。随着我们的理解的提高,我们也更加清楚地认识到对系统(多元)药理学的需求。

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