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Challenges in the annotation of pseudoenzymes in databases: the UniProtKB approach

机译:数据库中伪酶注释的挑战:UNIPROTKB方法

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摘要

The universal protein knowledgebase (UniProtKB) collects and centralises functional information on proteins across a wide range of species. In addition to the functional information added to all protein entries, for enzymes, which represent 20-40% of most proteomes, UniProtKB provides additional information about Enzyme Commission classification, catalytic activity, cofactors, enzyme regulation, kinetics and pathways, all based on critical assessment of published experimental data. Computer-based analysis and structural data are used to enrich the annotation of the sequence through the identification of active sites and binding sites. While the annotation of enzymes is well-defined, the curation of pseudoenzymes in UniProtKB has highlighted some challenges: how to identify them, how to assess their lack of catalytic activity, how to annotate their lack of catalytic activity in a consistent way and how much can be inferred and propagated from experimental data obtained from other species. Through various examples, we illustrate some of these issues and discuss some of the changes we propose to enhance the annotation and discovery of pseudoenzymes. Ultimately, improving the curation of pseudoenzymes will provide the scientific community with a comprehensive resource for pseudoenzymes, which in turn will lead to a better understanding of the evolution of these molecules, the aetiology of related diseases and the development of drugs.
机译:通用蛋白质知识库(UNIPROTKB)收集和集中在各种物种上的蛋白质功能信息。除了为所有蛋白质条目添加的功能信息外,对于酶的酶,其占大多数蛋白质群的20-40%,Uniprotkb提供了有关酶委员会分类,催化活性,辅助因子,酶调节,动力学和途径的额外信息,全部基于批判性评估已发表的实验数据。基于计算机的分析和结构数据通过鉴定活性位点和结合位点来丰富序列的注释。虽然酶的注释是明确定义的,但UNIPROTKB中伪酶的治疗突出了一些挑战:如何识别它们,如何评估缺乏催化活动,如何以一致的方式注释缺乏催化活动和多少可以从从其他物种获得的实验数据中推断并传播。通过各种例子,我们说明了一些问题,并讨论了我们提出的一些改变,以增强伪酶的注释和发现。最终,改善伪酶的治疗将为科学界提供伪酶的综合资源,这反过来会导致更好地了解这些分子的演变,相关疾病的疾病和药物的发展。

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