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从交替单胞菌属细菌 Bs31 中生产和功能表征一种新型甘露聚糖酶。

Production and Functional Characterization of a Novel Mannanase from Alteromonadaceae Bacterium Bs31.

机构信息

College of Biology and Pharmaceutical Engineering, Wuhan Polytechnic University, Wuhan 430023, China.

出版信息

Protein Pept Lett. 2022;29(8):692-701. doi: 10.2174/0929866529666220615161603.

Abstract

BACKGROUND

Mannans are the main components of hemicellulose in nature and serve as the major storage polysaccharide in legume seeds. To mine new mannanase genes and identify their functional characteristics are an important basis for mannan biotechnological applications.

OBJECTIVE

In this study, a putative mannanase gene (ManBs31) from the genome of the marine bacterium Alteromonadaceae Bs31 was characterized.

METHODS

Amino acid sequence analysis and protein structural modeling were used to reveal the molecular features of ManBs31. The catalytic domain of ManBs31 was recombinantly produced using Escherichia coli and Pichia pastoris expression systems. The biochemical properties of the enzymes were determined by reducing sugar assay and thin-layer chromatography.

RESULTS

Sequence analysis revealed that ManBs31 was a multidomain protein, consisting of a catalytic domain belonging to glycoside hydrolase family 5 (GH5) and two cellulose-binding domains. Recombinant ManBs31-GH5 exhibited the maximum hydrolytic performance at 70 ºC and pH 6. It showed the best hydrolysis capacity toward konjac glucomannan (specific enzyme activity up to 1070.84 U/mg) and poor hydrolysis ability toward galactomannan with high side-chain modifications (with a specific activity of 344.97 U/mg and 93.84 U/mg to locust bean gum and ivory nut mannan, respectively). The hydrolysis products of ManBs31-GH5 were mannooligosaccharides, and no monosaccharide was generated. Structural analysis suggested that ManBs31-GH5 had a noncanonical +2 subsite compared with other GH5 mannanases.

CONCLUSION

ManBs31 was a novel thermophilic endo-mannanase and it provided a new alternative for the biodegradation of mannans, especially for preparation of probiotic mannooligosaccharides.

摘要

背景

甘露聚糖是自然界中半纤维素的主要成分,也是豆科种子中主要的储存多糖。挖掘新的甘露聚糖酶基因并鉴定其功能特性是甘露聚糖生物技术应用的重要基础。

目的

本研究从海洋菌 Alteromonadaceae Bs31 的基因组中鉴定了一个假定的甘露聚糖酶基因(ManBs31)。

方法

使用氨基酸序列分析和蛋白质结构建模来揭示 ManBs31 的分子特征。使用大肠杆菌和毕赤酵母表达系统重组生产 ManBs31 的催化结构域。通过还原糖测定和薄层层析法测定酶的生化性质。

结果

序列分析表明,ManBs31 是一种多结构域蛋白,由属于糖苷水解酶家族 5(GH5)的催化结构域和两个纤维素结合结构域组成。重组 ManBs31-GH5 在 70℃和 pH6 下表现出最大的水解性能。它对魔芋葡甘露聚糖具有最佳的水解能力(比酶活高达 1070.84 U/mg),而对具有高侧链修饰的半乳甘露聚糖的水解能力较差(分别对罗望子胶和象牙果甘露聚糖的比酶活为 344.97 U/mg 和 93.84 U/mg)。ManBs31-GH5 的水解产物为甘露寡糖,没有生成单糖。结构分析表明,与其他 GH5 甘露聚糖酶相比,ManBs31-GH5 具有非典型的+2亚基。

结论

ManBs31 是一种新型的嗜热内切甘露聚糖酶,为甘露聚糖的生物降解提供了一种新的选择,特别是用于制备益生菌甘露寡糖。

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