首页> 外文期刊>Journal of the American Oil Chemists' Society >Cross-Linking of Lipases Adsorbed on Hydrophobic Supports: Highly Selective Hydrolysis of Fish Oil Catalyzed by RML
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Cross-Linking of Lipases Adsorbed on Hydrophobic Supports: Highly Selective Hydrolysis of Fish Oil Catalyzed by RML

机译:疏水载体上吸附的脂肪酶的交联:RML催化的高选择性水解鱼油

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摘要

Organic cosolvents may improve the properties of lipases (e.g., selectivity); however, organic cosolvents also promote the desorption of the enzyme from its hydrophobic supports. In this study, adsorbed lipase molecules were cross-linked with polyfunctional polymers, such as aldehyde-dextrans, to prevent this desorption. The desorption of adsorbed lipases was greatly reduced by optimizing the polymer size, polymer/lipase ratio, and cross-linking time. More than 95% of cross-linked, immobilized Rhizomucor miehei lipase (RML) remained adsorbed on the support after washing with cosolvents or detergents. This new, immobilized RML preparation mediated the hydrolysis of sardine oil in the presence of organic cosolvents. The presence of cosolvents promoted small losses of hydrolytic activity. Interestingly, however, 50% 2-propanol also promoted increased selectivity in the release of eicosapentaenoic acid (EPA) in relation to docosahexaenoic acid (DHA). An EPA/DHA ratio of 4:1 in the absence of 2-propanol was increased to a ratio of 22:1 in the presence of 2-propanol. The new RML derivatives were relatively stable under the selected reaction conditions. Their overall half-life was 100 h, but, in a second inactivation phase (below 60% of remaining activity), it took 600 h to reach 30% of their remaining activity.
机译:有机助溶剂可改善脂肪酶的性质(例如,选择性);然而,有机助溶剂还促进酶从其疏水性载体上解吸。在这项研究中,吸附的脂肪酶分子与多官能聚合物(如醛-葡聚糖)交联,以防止这种脱附。通过优化聚合物尺寸,聚合物/脂肪酶比率和交联时间,大大降低了吸附脂肪酶的解吸。用助溶剂或去污剂洗涤后,超过95%的交联的固定化根瘤菌米希脂肪酶(RML)仍然吸附在载体上。在有机助溶剂存在下,这种新的固定化RML制剂介导了沙丁鱼油的水解。助溶剂的存在促进了水解活性的少量损失。然而,有趣的是,相对于二十二碳六烯酸(DHA),50%2-丙醇还可以提高二十碳五烯酸(EPA)释放的选择性。在不存在2-丙醇的情况下,EPA / DHA的比率为4:1,在存在2-丙醇的情况下,比率为22:1。在选定的反应条件下,新的RML衍生物相对稳定。它们的总半衰期为100小时,但是在第二个灭活阶段(低于剩余活性的60%),花了600小时才达到了剩余活性的30%。

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