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从 Caballeronia fortuita 中鉴定出一种 d-塔格糖 3-差向异构酶及其在稀有糖生产中的应用。

Characterization of a d-tagatose 3-epimerase from Caballeronia fortuita and its application in rare sugar production.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, People's Republic of China.

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, People's Republic of China; International Joint Laboratory on Food Safety, Jiangnan University, Wuxi, Jiangsu 214122, People's Republic of China.

出版信息

Int J Biol Macromol. 2019 Oct 1;138:536-545. doi: 10.1016/j.ijbiomac.2019.07.112. Epub 2019 Jul 19.

Abstract

Recently, rare sugars have caused extensively attention due to their beneficial physiological functions and potential applications in food systems and medical fields. Ketose 3-epimerase (KEase) can catalyze reversibly the epimerization between ketoses which is the pivotal enzyme in Izumoring strategy and an effective tool for biological production of rare sugars. In this work, a KEase from Caballeronia fortuita was recombined and characterized as a d-tagatose 3-epimerase (DTEase, EC 5.1.3.31). The recombinant DTEase displayed the highest activity at pH7.5 and 65°C in the presence of Co. The recombinant DTEase displayed the relatively high thermostability and the half-life (t) was determined to be 7.13, 5.13, and 1.05h at 50, 55, and 60°C, respectively. The recombinant DTEase had a wide substrate specificity and the specific activities towards d-tagatose, d-allulose, d-fructose and l-sorbose were measured to be 801±2.3, 450±2.7, 270±1.5 and 55±1.8Umg, respectively. So far, the recombinant DTEase exhibited the highest specific activity towards d-tagatose compared with other reported KEases. Furthermore, the recombinant DTEase could produce 314.2g/L d-sorbose from 500g/L d-tagatose and 147.0g/L d-allulose from 500g/L d-fructose, with a transformation ratio of 68.2% and 29.4%, respectively. The recombinant DTEase could realize effectively the transformations between various ketoses and was a prominent candidate for production of rare sugars.

摘要

最近,稀有糖因其有益的生理功能和在食品系统和医学领域的潜在应用而引起了广泛的关注。酮糖 3-差向异构酶(KEase)可以可逆地催化酮糖之间的差向异构化,它是 Izumoring 策略中的关键酶,也是生物生产稀有糖的有效工具。在这项工作中,重组了来自 Caballeronia fortuita 的 KEase,并将其表征为 d-塔格糖 3-差向异构酶(DTEase,EC 5.1.3.31)。重组 DTEase 在 Co 存在下,在 pH7.5 和 65°C 下表现出最高的活性。重组 DTEase 表现出相对较高的热稳定性,半衰期(t)在 50、55 和 60°C 下分别为 7.13、5.13 和 1.05h。重组 DTEase 具有广泛的底物特异性,对 d-塔格糖、d-阿洛酮糖、d-果糖和 l-山梨糖的比活性分别测定为 801±2.3、450±2.7、270±1.5 和 55±1.8Umg。到目前为止,与其他报道的 KEase 相比,重组 DTEase 对 d-塔格糖表现出最高的比活性。此外,重组 DTEase 可以从 500g/L d-塔格糖生产 314.2g/L d-山梨糖,从 500g/L d-果糖生产 147.0g/L d-阿洛酮糖,转化率分别为 68.2%和 29.4%。重组 DTEase 可以有效地实现各种酮糖之间的转化,是生产稀有糖的理想候选酶。

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