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通过二硫键引入和脯氨酸残基取代提高黄曲霉酸性木聚糖酶的热稳定性。

Improved thermostability of an acidic xylanase from Aspergillus sulphureus by combined disulphide bridge introduction and proline residue substitution.

机构信息

State Key Laboratory of Animal Nutrition, China Agricultural University, No.2 Yuanmingyuan West Road, Beijing, 100193, China.

School of Medicine Biochemistry and Molecular Genetics, University of Colorado Denver, Aurora, CO, 80045, USA.

出版信息

Sci Rep. 2017 May 8;7(1):1587. doi: 10.1038/s41598-017-01758-5.

Abstract

As a feed additive, xylanase has been widely applied in the feed of monogastric animals, which contains multiple plant polysaccharides. However, during feed manufacture, the high pelleting temperatures challenge wild-type xylanases. The aim of this study was to improve the thermostability of Aspergillus sulphureus acidic xylanase. According to the predicted protein structure, a series of disulphide bridges and proline substitutions were created in the xylanase by PCR, and the mutants were expressed in Pichia pastoris. Enzyme properties were evaluated following chromatographic purification. All the recombinant enzymes showed optima at pH 3.0 and 50 °C or 55 °C and better resistance to some chemicals except for CuSO. The specific activity of the xylanase was decreased by introduction of the mutations. Compared to the wild-type enzyme, a combined mutant, T53C-T142C/T46P, with a disulphide bond at 53-142 and a proline substitution at 46, showed a 22-fold increase of half-life at 60 °C. In a 10-L fermentor, the maximal xylanase activity of T53C-T142C/T46P reached 1,684 U/mL. It was suggested that the T53C-T142C/T46P mutant xylanase had excellent thermostability characteristics and could be a prospective additive in feed manufacture.

摘要

作为一种饲料添加剂,木聚糖酶已广泛应用于含有多种植物多糖的单胃动物饲料中。然而,在饲料生产过程中,高温制粒对野生型木聚糖酶提出了挑战。本研究旨在提高硫色曲霉酸性木聚糖酶的耐热性。根据预测的蛋白质结构,通过 PCR 在木聚糖酶中创建了一系列二硫键和脯氨酸取代,并在毕赤酵母中表达了突变体。通过色谱纯化后评估了酶的性质。所有重组酶在 pH 3.0 和 50°C 或 55°C 时表现出最佳活性,并且对除 CuSO 以外的一些化学物质具有更好的抗性。木聚糖酶的比活降低。与野生型酶相比,在 53-142 位形成二硫键并在 46 位取代脯氨酸的组合突变体 T53C-T142C/T46P 在 60°C 时半衰期增加了 22 倍。在 10-L 发酵罐中,T53C-T142C/T46P 的最大木聚糖酶活力达到 1684 U/mL。结果表明,T53C-T142C/T46P 突变体木聚糖酶具有优异的耐热特性,可作为饲料生产中的一种有前途的添加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69f1/5431495/24bcb28cbc82/41598_2017_1758_Fig1_HTML.jpg

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