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首页> 外文期刊>Journal of Molecular Biology >A structure-based anatomy of the E.coli metabolome.
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A structure-based anatomy of the E.coli metabolome.

机译:大肠杆菌代谢组的基于结构的解剖。

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摘要

The Escherichia coli metabolome has been characterised using the two-dimensional structures of 745 metabolites, obtained from the EcoCyc and KEGG databases. Physicochemical properties of the metabolome have been calculated to provide an overview of this set of cognate ligands. A library of fragments commonly found among these molecules has been employed to reveal the main constituents of metabolites, and to assist a broad classification of the metabolome into biochemically relevant classes. Fragment-based fingerprints reveal the metabolome as a continuum in the two-dimensional structural space, where clusters of molecules sharing similar scaffolds can be identified, but are generally overlapping. Nucleotide, carbohydrate and amino acid-like molecules are the most prominent, but at high levels of similarity, a more detailed classification is possible. Classification schemes for the metabolome are a promising tool for understanding the chemical diversity of the metabolome. When used in conjunction with existing classifications of the proteome, they can help to elucidate the binding preferences and promiscuity of proteins and their cognate substrates.
机译:大肠杆菌代谢组已使用从EcoCyc和KEGG数据库获得的745种代谢物的二维结构进行了表征。已经计算了代谢组的理化性质,以提供这组同源配体的概述。在这些分子中常见的片段库已被用来揭示代谢物的主要成分,并协助将代谢组广泛分类为生化相关类别。基于片段的指纹揭示了代谢物组在二维结构空间中的连续性,在该处可以识别共享相似支架的分子簇,但通常是重叠的。核苷酸,碳水化合物和类氨基酸分子最为突出,但在高度相似的情况下,可能会进行更详细的分类。代谢组的分类方案是了解代谢组化学多样性的有前途的工具。当与蛋白质组的现有分类结合使用时,它们可以帮助阐明蛋白质及其同源底物的结合偏好和混杂性。

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