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首页> 外文期刊>Protein engineering design & selection: PEDS >Dividing the large glycoside hydrolase family 13 into subfamilies: towards improved functional annotations of alpha-amylase-related proteins
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Dividing the large glycoside hydrolase family 13 into subfamilies: towards improved functional annotations of alpha-amylase-related proteins

机译:将较大的糖苷水解酶家族13分为亚家族:改进与α-淀粉酶相关蛋白的功能注释

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摘要

Family GH13, also known as the alpha-amylase family, is the largest sequence-based family of glycoside hydrolases and groups together a number of different enzyme activities and substrate specificities acting on alpha-glycosidic bonds. This polyspecificity results in the fact that the simple membership of this family cannot be used for the prediction of gene function based on sequence alone. In order to establish robust groups that show an improved correlation between sequence and enzymatic specificity, we have performed a large-scale analysis of 1691 family GH13 sequences by combining clustering, similarity search and phylogenetic methods. About 80% of the sequences could be reliably classified into 35 subfamilies. Most subfamilies appear monofunctional (i.e. contain enzymes with the same substrate and the same product). The close examination of the other, apparently polyspecific, subfamilies revealed that they actually group together enzymes with strongly related (or even sometimes virtually identical) activities. Overall our subfamily assignment allows to set the limits for genomic function prediction on this large family of biologically and industrially important enzymes.
机译:GH13家族,也称为α-淀粉酶家族,是最大的基于序列的糖苷水解酶家族,将作用于α-糖苷键的许多不同酶活性和底物特异性结合在一起。这种多特异性导致以下事实:该家族的简单成员不能用于仅基于序列的基因功能的预测。为了建立显示序列和酶特异性之间改善的相关性的稳固基团,我们通过结合聚类,相似性搜索和系统进化方法对1691族GH13序列进行了大规模分析。大约80%的序列可以可靠地分为35个亚家族。大多数亚家族似乎是单功能的(即含有具有相同底物和相同产物的酶)。对其他明显具有多特异性的亚家族的仔细检查表明,它们实际上将具有强烈相关(甚至有时几乎相同)活性的酶归为一组。总体而言,我们的亚科任务可以为这一生物学和工业上重要的酶大家族设定基因组功能预测的极限。

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