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Genome-Wide Semi-Automated Annotation of Transporter Systems

机译:全基因组转运蛋白系统的半自动化注释

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摘要

Usually, transport reactions are added to genome-scale metabolic models (GSMMs) based on experimental data and literature. This approach does not allow associating specific genes with transport reactions, which impairs the ability of the model to predict effects of gene deletions. Novel methods for systematic genome-wide transporter functional annotation and their integration into GSMMs are therefore necessary. In this work, an automatic system to detect and classify all potential membrane transport proteins for a given genome and integrate the related reactions into GSMMs is proposed, based on the identification and classification of genes that encode transmembrane proteins. The Transport Reactions Annotation and Generation (TRIAGE) tool identifies the metabolites transported by each transmembrane protein and its transporter family. The localization of the carriers is also predicted and, consequently, their action is confined to a given membrane. The integration of the data provided by TRIAGE with highly curated models allowed the identification of new transport reactions. TRIAGE is included in the new release of merlin, a software tool previously developed by the authors, which expedites the GSMM reconstruction processes.
机译:通常,根据实验数据和文献将转运反应添加到基因组规模的代谢模型(GSMM)中。这种方法不允许将特定基因与转运反应相关联,从而削弱了模型预测基因缺失影响的能力。因此,需要用于系统性全基因组转运蛋白功能注释并将其整合到GSMM中的新方法。在这项工作中,基于编码跨膜蛋白的基因的鉴定和分类,提出了一种自动系统,该系统可以检测和分类给定基因组的所有潜在膜转运蛋白,并将相关反应整合到GSMM中。转运反应注释和生成(TRIAGE)工具可识别每种跨膜蛋白及其转运蛋白家族转运的代谢产物。还可以预测载体的定位,因此,它们的作用仅限于给定的膜。 TRIAGE提供的数据与高度精选的模型相集成,可以识别新的转运反应。 TRIAGE包含在作者先前开发的软件工具merlin的新版本中,该软件工具可加快GSMM的重建过程。

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