糖苷水解酶家族 5 内切葡聚糖酶中插入的碳水化合物结合模块的协同作用。

Q3 Chemistry
Ting Juan Ye, Kai Fa Huang, Tzu Ping Ko, Shih Hsiung Wu
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引用次数: 0

摘要

大多数已知的纤维素酶相关碳水化合物结合模块(CBMs)都附着在酶的 N 或 C 端,或者单独表达并组装成多酶复合物(例如形成纤维素体),而不是插入催化结构域。本文通过解析晶体结构显示,来自台湾美热菌(Meiothermus taiwanensis)WR-220 的 MtGlu5 是一种 GH5 家族的内-β-1,4-葡聚糖酶(EC 3.2.1.4),具有两部分结构,包括一个具有 (β/α)8 TIM 桶折叠的 Cel5A 样催化结构域和一个具有 β 果冻卷折叠的插入 CBM29 样非催化结构域。通过使用全长和 CBM 缺失的 MtGlu5 蛋白的非活性突变体进行等温滴定量热测定,CBM 的缺失大大降低了 MtGlu5 的催化效率。相反,将来自 MtGlu5 的 CBM 插入来自 Thermotoga maritima 的 TmCel5A 可大大提高 TmCel5A 的底物亲和力。在活跃的全长 MtGlu5 和 CBM 缺失的 MtGlu5 催化结构域的两条色氨酸侧链之间观察到的结合糖表明存在重要的堆积力。通过底物建模,MtGlu5 的催化结构域和 CBM 在与单链多糖结合方面的协同作用得以显现,其中在跨结构域沟槽中发现了额外的表面色氨酸残基。随后的定点突变结果证实了 MtGlu5 两个结构域中的其他几个色氨酸残基在底物结合中的关键作用。这些发现揭示了在现有酶的催化结构域中加入 CBM 以制造强效纤维素酶的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergic action of an inserted carbohydrate-binding module in a glycoside hydrolase family 5 endoglucanase.

Most known cellulase-associated carbohydrate-binding modules (CBMs) are attached to the N- or C-terminus of the enzyme or are expressed separately and assembled into multi-enzyme complexes (for example to form cellulosomes), rather than being an insertion into the catalytic domain. Here, by solving the crystal structure, it is shown that MtGlu5 from Meiothermus taiwanensis WR-220, a GH5-family endo-β-1,4-glucanase (EC 3.2.1.4), has a bipartite architecture consisting of a Cel5A-like catalytic domain with a (β/α)8 TIM-barrel fold and an inserted CBM29-like noncatalytic domain with a β-jelly-roll fold. Deletion of the CBM significantly reduced the catalytic efficiency of MtGlu5, as determined by isothermal titration calorimetry using inactive mutants of full-length and CBM-deleted MtGlu5 proteins. Conversely, insertion of the CBM from MtGlu5 into TmCel5A from Thermotoga maritima greatly enhanced the substrate affinity of TmCel5A. Bound sugars observed between two tryptophan side chains in the catalytic domains of active full-length and CBM-deleted MtGlu5 suggest an important stacking force. The synergistic action of the catalytic domain and CBM of MtGlu5 in binding to single-chain polysaccharides was visualized by substrate modeling, in which additional surface tryptophan residues were identified in a cross-domain groove. Subsequent site-specific mutagenesis results confirmed the pivotal role of several other tryptophan residues from both domains of MtGlu5 in substrate binding. These findings reveal a way to incorporate a CBM into the catalytic domain of an existing enzyme to make a robust cellulase.

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来源期刊
Journal of Computational and Theoretical Nanoscience
Journal of Computational and Theoretical Nanoscience 工程技术-材料科学:综合
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0
审稿时长
3.9 months
期刊介绍: Information not localized
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