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首页> 外文期刊>Journal of Molecular Biology >Extent and Origins of Functional Diversity in a Subfamily of Glycoside Hydrolases
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Extent and Origins of Functional Diversity in a Subfamily of Glycoside Hydrolases

机译:糖苷水解酶亚家族中功能多样性的程度和起源

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摘要

Some glycoside hydrolases have broad specificity for hydrolysis of glycosidic bonds, potentially increasing their functional utility and flexibility in physiological and industrial applications. To deepen the understanding of the structural and evolutionary driving forces underlying specificity patterns in glycoside hydrolase family 5, we quantitatively screened the activity of the catalytic core domains from subfamily 4 (GH5_4) and closely related enzymes on four substrates: lichenan, xylan, mannan, and xyloglucan. Phylogenetic analysis revealed that GH5_4 consists of three major clades, and one of these clades, referred to here as Glade 3, displayed average specific activities of 4.2 and 1.2 U/mg on lichenan and xylan, approximately 1 order of magnitude larger than the average for active enzymes in clades 1 and 2. Enzymes in Glade 3 also more consistently met assay detection thresholds for reaction with all four substrates. We also identified a subfamily-wide positive correlation between lichenase and xylanase activities, as well as a weaker relationship between lichenase and xyloglucanase. To connect these results to structural features, we used the structure of CeIE from Hungateiclostridium thermocellum (PDB 4IM4) as an example Glade 3 enzyme with activities on all four substrates. Comparison of the sequence and structure of this enzyme with others throughout GH5_4 and neighboring subfamilies reveals at least two residues (H149 and W203) that are linked to strong activity across the substrates. Placing GH5_4 in context with other related subfamilies, we highlight several possibilities for the ongoing evolutionary specialization of GH5_4 enzymes. (C) 2019 Published by Elsevier Ltd.
机译:一些糖苷水解酶对水解糖苷键的水解具有广泛的特异性,潜在地提高了生理和工业应用中的功能性效用和灵活性。为了深化糖苷水解酶系列中的特异性模式的结构和进化驱动力的理解,我们定量筛选了四种底物中催化核心结构域的活性核心域和四个基质的密切相关酶:亚科南,木兰,甘露甘露和木瓜。系统发育分析表明,GH5_4由三个主要的片状组成,其中一个片状,其中一个人称为Glade 3,在Lichenan和Xylan上显示的平均特异性活动为4.2和1.2 U / Mg,大约1级大于平均值在叶片1和2中的活性酶在Glade 3中的酶也更始终如一地满足与所有四个基材反应的测定检测阈值。我们还鉴定了亚科联酶和木聚糖酶活性之间的亚科宽的阳性相关性,以及结缕碱和木糖葡聚糖酶之间的较弱关系。为了将这些结果连接到结构特征,我们使用Hungateiclostridium Thermocellum(PDB 4im4)的Ceie的结构作为一个例子,在所有四个基板上具有活动的亮度3酵素。在GH5_4和相邻亚壳中与其他酶的序列和结构的比较揭示了至少两个残基(H149和W203),其与衬底的强活动相关联。将GH5_4放在其他相关的亚科属中,我们突出了持续进化的GH5_4酶的几种可能性。 (c)2019年由elestvier有限公司发布

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