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Substrate-binding specificity of chitinase and chitosanase as revealed by active-site architecture analysis

机译:活性部位结构分析揭示了几丁质酶和壳聚糖酶的底物结合特异性

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摘要

Chitinases and chitosanases, referred to as chitinolytic enzymes, are two important categories of glycoside hydrolases (GH) that play a key role in degrading chitin and chitosan, two naturally abundant polysaccharides. Here, we investigate the active site architecture of the major chitosanase (GH8, GH46) and chitinase families (GH18, GH19). Both charged (Glu, His, Arg, Asp) and aromatic amino acids (Tyr, Trp, Phe) are observed with higher frequency within chitinolytic active sites as compared to elsewhere in the enzyme structure, indicating significant roles related to enzyme function. Hydrogen bonds between chitinolytic enzymes and the substrate C2 functional groups, i.e. amino groups and N-acetyl groups, drive substrate recognition, while non-specific CH-p interactions between aromatic residues and substrate mainly contribute to tighter binding and enhanced processivity evident in GH8 and GH18 enzymes. For different families of chitinolytic enzymes, the number, type, and position of substrate atoms bound in the active site vary, resulting in different substrate-binding specificities. The data presented here explain the synergistic action of multiple enzyme families at a molecular level and provide a more reasonable method for functional annotation, which can be further applied toward the practical engineering of chitinases and chitosanases. (C) 2015 Elsevier Ltd. All rights reserved.
机译:几丁质酶和壳聚糖酶(称为几丁质分解酶)是糖苷水解酶(GH)的两个重要类别,它们在降解几丁质和壳聚糖(两种天然丰富的多糖)中起关键作用。在这里,我们调查了主要的壳聚糖酶(GH8,GH46)和几丁质酶家族(GH18,GH19)的活性位点结构。与在酶结构中的其他位置相比,在几丁质分解活性位点中带电荷的(Glu,His,Arg,Asp)和芳香族氨基酸(Tyr,Trp,Phe)的频率更高。几丁质分解酶与底物C2官能团(即氨基和N-乙酰基)之间的氢键驱动底物识别,而芳香族残基与底物之间的非特异性CH-p相互作用主要有助于GH8和GH8中明显的紧密结合和增强的合成能力。 GH18酶。对于不同的几丁质分解酶家族,结合在活性位点上的底物原子的数量,类型和位置都不同,从而导致不同的底物结合特异性。此处提供的数据在分子水平上解释了多种酶家族的协同作用,并为功能注释提供了更合理的方法,可进一步应用于几丁质酶和壳聚糖酶的实际工程设计中。 (C)2015 Elsevier Ltd.保留所有权利。

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