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使用已知和假设反应对代谢重建中的知识空白进行注释的工作流程。

A workflow for annotating the knowledge gaps in metabolic reconstructions using known and hypothetical reactions.

机构信息

Laboratory of Computational Systems Biotechnology, École Polytechnique Fédérale de Lausanne, EPFL, 1015 Lausanne, Switzerland.

Department of Chemical Engineering, University of Patras, 26504 Patras, Greece.

出版信息

Proc Natl Acad Sci U S A. 2022 Nov 16;119(46):e2211197119. doi: 10.1073/pnas.2211197119. Epub 2022 Nov 7.

Abstract

Advances in medicine and biotechnology rely on a deep understanding of biological processes. Despite the increasingly available types and amounts of omics data, significant knowledge gaps remain, with current approaches to identify and curate missing annotations being limited to a set of already known reactions. Here, we introduce etwork ntegrated omputational xplorer for ap nnotation of tabolism (NICEgame), a workflow to identify and curate nonannotated metabolic functions in genomes using the ATLAS of Biochemistry and genome-scale metabolic models (GEMs). To resolve gaps in GEMs, NICEgame provides alternative sets of known and hypothetical reactions, assesses their thermodynamic feasibility, and suggests candidate genes to catalyze these reactions. We identified metabolic gaps and applied NICEgame in the latest GEM of , iML1515, and enhanced the genome annotation by resolving 47% of these gaps. NICEgame, applicable to any GEM and functioning from open-source software, should thus enhance all GEM-based predictions and subsequent biotechnological and biomedical applications.

摘要

医学和生物技术的进步依赖于对生物过程的深入理解。尽管目前可获得的组学数据的类型和数量越来越多,但仍存在显著的知识空白,当前识别和整理缺失注释的方法仅限于一组已知的反应。在这里,我们介绍了网络综合计算代谢物注释探索器(NICEgame),这是一种使用生物化学图谱和基因组规模代谢模型(GEMs)来识别和整理基因组中未注释的代谢功能的工作流程。为了解决 GEMs 中的空白,NICEgame 提供了已知和假设反应的替代集,评估它们的热力学可行性,并提出催化这些反应的候选基因。我们确定了代谢空白,并在最新的 GEM iML1515 中应用了 NICEgame,通过解决其中 47%的空白来增强 基因组注释。因此,适用于任何 GEM 并可从开源软件运行的 NICEgame 应该增强所有基于 GEM 的预测以及随后的生物技术和生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c883/9674266/ce94ce2ef470/pnas.2211197119fig01.jpg

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