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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Novel cross-linked enzyme aggregates of levanase from Bacillus lehensis G-1 for short-chain fructooligosaccharides synthesis: Developmental, physicochemical, kinetic and thermodynamic properties
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Novel cross-linked enzyme aggregates of levanase from Bacillus lehensis G-1 for short-chain fructooligosaccharides synthesis: Developmental, physicochemical, kinetic and thermodynamic properties

机译:来自芽孢杆菌的新型交联酶聚集酶Lehensis G-1用于短链果寡糖合成:发育,物理化学,动力学和热力学性质

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Short-chain fructooligosaccharides (scFOSs) can be produced from the levan hydrolysis using levanase. Levanase from Bacillus lehensis G1 (rlevblg1) is an enzyme that specifically converts levan to scFOSs. However, the use of free levanase presents a lack of stability and reusability, thus hindering the synthesis of scFOSs for continuous reactions. Here, CLEAs for rlevblg1 were prepared and characterized. Cross-linked levanase aggregates using glutaraldehyde (CLLAs-ga) and bovine albumin serum (CLLAs-ga-bsa) showed the best activity recovery of 92.8% and 121.2%, respectively. The optimum temperature of CLLAs-ga and CLLAs-ga-bsa was increased to 35 degrees C and 40 degrees C, respectively, from its free rlevblg1 (30 degrees C). At high temperature (50 degrees C), the half-life of CLLAs-ga-bsa was higher than that of free rlevblg1 and CLLAs-ga. Both CLLAs exhibited higher stability at pH 9 and pH 10. Hyperactivation of CLLAs-ga-bsa was achieved with an effectiveness factor of more than 1 and with improved catalytic efficiency. After 3 h reaction, CLLAs-ga-bsa produced the highest total scFOSs yield of 35.4% and total sugar of 60.4% per gram levan. Finally, the reusability of CLLAs for 8 cycles with more than 50% activity retained makes them as a potential synthetic catalyst to be explored for scFOSs synthesis. (c) 2020 Elsevier B.V. All rights reserved.
机译:短链寡糖(SCFOSS)可以通过利用Levanase来源的水解。来自芽孢杆菌G1(RLEVBLG1)的Levanase是一种特别将Levan转换为SCFoss的酶。然而,使用游离左酶缺乏稳定性和可重用性,因此阻碍了SCFOSS的合成以进行连续反应。这里,制备并表征RLEVBLG1的CLEA。使用戊二醛(CLLAS-GA)和牛白蛋白血清(CLLAS-GA-BSA)的交联的左萘酶聚集体分别显示出92.8%和121.2%的最佳活性回收率。 Cllas-Ga和Cllas-Ga-BSA的最佳温度分别从其自由RLEVBLG1(30℃)增加到35℃和40℃。在高温(50℃),Cllas-Ga-BSA的半衰期高于自由RLEVBLG1和CLLAS-GA的半衰期。两种CLLA在pH 9和pH10的稳定性上表现出更高的稳定性.CLLAS-GA-BSA的效果效果因子超过1的稳定性,并且具有改善的催化效率。 3小时后,CLLAS-GA-BSA产生的总SCFOSS产量为35.4%,总糖每克柳南60.4%。最后,80%活性的Cllas的可重用性为保留超过50%的活性,使其作为探索SCFoss合成的潜在合成催化剂。 (c)2020 Elsevier B.v.保留所有权利。

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