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米根霉脂肪酶交联聚集体作为工业生物催化剂:制备、优化、表征及在手性拆分反应中的应用。

Crosslinked aggregates of Rhizopus oryzae lipase as industrial biocatalysts: preparation, optimization, characterization, and application for enantioselective resolution reactions.

机构信息

Dept. of Biochemistry, Faculty of Science, Ege University, 35100 Bornova/Izmir, Turkey.

出版信息

Biotechnol Prog. 2012 Jul;28(4):937-45. doi: 10.1002/btpr.1571. Epub 2012 Jun 26.

Abstract

Lipase from Rhizopus oryzae (ROL) was immobilized as crosslinked enzyme aggregate (CLEA) via precipitation with ammonium sulfate and simultaneous crosslinking with glutaraldehyde. The optimum conditions of the immobilization process were determined. Lipase CLEAs showed a twofold increase in activity when Tween 80-pretreated lipase was used for CLEA preparation. CLEAs were shown to have several advantages compared to free lipase. CLEAs were more stable at 50°C and 60°C as well as for a wide range of pH. After incubation at 50°C, CLEA showed 74% of initial activity whereas free enzyme was totally inactivated. Reduction of Schiff bases has been performed for the first time in the CLEA preparation process significantly improving the chemically modified CLEAs' reusability, thus providing an enzyme with high potential for recycling even under aqueous reaction conditions where enzyme leakage is, in general, one of the major problems. The CLEA retained 91% activity after 10 cycles in aqueous medium. The immobilized enzyme was used for kinetic resolution reactions. Results showed that immobilization had an enhancing effect on the conversion (c) as well as on the enantiomeric ratio (E). ROL CLEA displayed five times higher enantioselectivity for the hydrolysis of (R,S)-1-phenylethyl acetate and likewise 1.5 times higher enantioselectivity for the transesterification of racemic (R-S)-1-phenylethanol with vinylacetate.

摘要

米曲霉脂肪酶(ROL)通过硫酸铵沉淀和戊二醛交联同时被固定化形成交联酶聚集体(CLEA)。确定了固定化过程的最佳条件。当使用吐温 80 预处理的脂肪酶制备 CLEA 时,脂肪酶 CLEA 的活性增加了两倍。与游离脂肪酶相比,CLEA 具有许多优势。CLEA 在 50°C 和 60°C 以及较宽的 pH 范围内更稳定。在 50°C 孵育后,CLEA 显示出初始活性的 74%,而游离酶则完全失活。席夫碱的还原首次在 CLEA 制备过程中进行,这显著提高了化学修饰的 CLEAs 的可重复使用性,从而为即使在水相反应条件下也具有高回收潜力的酶提供了条件,在水相反应条件下,酶泄漏通常是主要问题之一。在水相介质中循环 10 次后,固定化酶保留了 91%的活性。固定化酶用于动力学拆分反应。结果表明,固定化对转化率(c)和对映体过量(E)都有增强作用。ROL CLEA 对(R,S)-1-苯乙醇酸酯的水解表现出五倍的高对映选择性,而对(R-S)-1-苯乙醇与醋酸乙烯酯的外消旋混合物的转酯化具有 1.5 倍的高对映选择性。

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