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新型海藻糖合酶用于生产海藻糖和海藻糖醛酸。

A Novel Trehalose Synthase for the Production of Trehalose and Trehalulose.

机构信息

Center of Innovative and Applied Bioprocessing, Mohali, India.

Department of Biotechnology, Panjab University, Chandigarh, India.

出版信息

Microbiol Spectr. 2021 Dec 22;9(3):e0133321. doi: 10.1128/Spectrum.01333-21. Epub 2021 Nov 24.

Abstract

A novel putative trehalose synthase gene () was identified from an extreme temperature thermal spring. The gene was expressed in Escherichia coli followed by purification of the protein (TreM). TreM exhibited the pH optima of 7.0 for trehalose and trehalulose production, although it was functional and stable in the pH range of 5.0 to 8.0. Temperature activity profiling revealed that TreM can catalyze trehalose biosynthesis in a wide range of temperatures, from 5°C to 80°C. The optimum activity for trehalose and trehalulose biosynthesis was observed at 45°C and 50°C, respectively. A catalytic reaction performed at the low temperature of 5°C yielded trehalose with significantly reduced by-product (glucose) production in the reaction. TreM displayed remarkable thermal stability at optimum temperatures, with only about 20% loss in the activity after heat (50°C) exposure for 24 h. The maximum bioconversion yield of 74% trehalose (at 5°C) and 90% trehalulose (at 50°C) was obtained from 100 mM maltose and 70 mM sucrose, respectively. TreM was demonstrated to catalyze trehalulose biosynthesis utilizing the low-cost feedstock jaggery, cane molasses, muscovado, and table sugar. Trehalose is a rare sugar of high importance in biological research, with its property to stabilize cell membrane and proteins and protect the organism from drought. It is instrumental in the cryopreservation of human cells, e.g., sperm and blood stem cells. It is also very useful in the food industry, especially in the preparation of frozen food products. Trehalose synthase is a glycosyl hydrolase 13 (GH13) family enzyme that has been reported from about 22 bacterial species so far. Of these enzymes, to date, only two have been demonstrated to catalyze the biosynthesis of both trehalose and trehalulose. We have investigated the metagenomic data of an extreme temperature thermal spring to discover a novel gene that encodes a trehalose synthase (TreM) with higher stability and dual transglycosylation activities of trehalose and trehalulose biosynthesis. This enzyme is capable of catalyzing the transformation of maltose to trehalose and sucrose to trehalulose in a wide pH and temperature range. The present investigation endorses the thermal aquatic habitat as a promising genetic resource for the biocatalysts with high potential in producing high-value rare sugars.

摘要

从极端温度温泉中鉴定出一种新型假定海藻糖合酶基因()。该基因在大肠杆菌中表达,随后纯化得到蛋白(TreM)。TreM 表现出生产海藻糖和海藻棉糖的 pH 最佳值为 7.0,尽管它在 pH 值为 5.0 至 8.0 的范围内具有功能且稳定。温度活性分析表明,TreM 可以在很宽的温度范围内(从 5°C 到 80°C)催化海藻糖的生物合成。海藻糖和海藻棉糖生物合成的最佳活性分别在 45°C 和 50°C 下观察到。在低温 5°C 下进行的催化反应导致反应中葡萄糖的副产物(葡萄糖)产量显著降低。TreM 在最佳温度下表现出显著的热稳定性,在 50°C 下暴露 24 小时后,其活性仅损失约 20%。从 100mM 麦芽糖和 70mM 蔗糖分别获得 74%海藻糖(在 5°C 下)和 90%海藻棉糖(在 50°C 下)的最大生物转化产率。TreM 被证明可以利用低成本的原料糖蜜、甘蔗糖蜜、红糖和白砂糖来催化海藻棉糖的生物合成。海藻糖是一种在生物研究中具有重要意义的稀有糖,其稳定细胞膜和蛋白质的特性以及保护生物体免受干旱的特性。它在人类细胞的冷冻保存中起着重要作用,例如精子和血液干细胞。它在食品工业中也非常有用,特别是在冷冻食品的制备中。海藻糖合酶是一种糖苷水解酶 13(GH13)家族酶,迄今为止已从约 22 种细菌中报道。迄今为止,只有两种酶已被证明可以催化海藻糖和海藻棉糖的生物合成。我们研究了极端温度温泉的宏基因组数据,以发现一种新型基因,该基因编码一种海藻糖合酶(TreM),具有更高的稳定性和海藻糖和海藻棉糖生物合成的双重转糖基化活性。该酶能够在宽 pH 和温度范围内催化麦芽糖向海藻糖和蔗糖向海藻棉糖的转化。本研究证实了水生热栖息地是一种很有前途的遗传资源,可用于生产高附加值稀有糖的具有高潜力的生物催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5950/8612140/9a7cacaec263/spectrum.01333-21-f001.jpg

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