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Peptide-based functional annotation of carbohydrate-active enzymes by conserved unique peptide patterns (CUPP)

机译:通过保守的独特肽模式(CUPP)对碳水化合物活性酶进行基于肽的功能注释

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摘要

BackgroundInsight into the function of carbohydrate-active enzymes is required to understand their biological role and industrial potential. There is a need for better use of the ample genomic data in order to enable selection of the most interesting proteins for further studies. The basis for elaborating a new approach to sequence analysis is the hypothesis that when using conserved peptide patterns to determine the similarities between proteins, the exact spacing between conserved adjacent amino acids in the proteins plays a prominent functional role. Thus, the objective of developing the method of conserved unique peptide patterns (CUPP) is to construct a peptide-based grouping and validate the method to provide evidence that CUPP captures function-related features of the individual carbohydrate-active enzymes (as defined by CAZy families). This approach facilitates grouping of enzymes at a level lower than protein families and/or subfamilies. A standardized, efficient, and robust approach to functional annotation of carbohydrate-active enzymes would support improved molecular insight into enzyme–substrate interaction.
机译:背景技术需要了解碳水化合物活性酶的功能,以了解其生物学作用和工业潜力。为了更好地选择最感兴趣的蛋白质,有必要更好地利用充足的基因组数据。阐述一种新的序列分析方法的基础是以下假设:使用保守的肽段模式确定蛋白质之间的相似性时,蛋白质中保守的相邻氨基酸之间的确切间隔起着重要的功能作用。因此,开发保守的独特肽段模式(CUPP)方法的目的是构建基于肽段的分组并验证该方法,以提供证据证明CUPP捕获了单个碳水化合物活性酶的功能相关特征(如CAZy所定义)家庭)。这种方法有助于以低于蛋白质家族和/或亚家族的水平对酶进行分组。对碳水化合物活性酶进行功能注释的标准化,有效且稳健的方法将有助于改善分子对酶与底物相互作用的认识。

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