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Construction of an Immobilized Thermophilic Esterase on Epoxy Support for Poly(ε-caprolactone) Synthesis

机译:聚(ε-己内酯)合成用环氧载体固定化嗜热酯酶的构建

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Developing an efficient immobilized enzyme is of great significance for improving the operational stability of enzymes in poly(ε-caprolactone) synthesis. In this paper, a thermophilic esterase AFEST from the archaeon Archaeoglobus fulgidus was successfully immobilized on the epoxy support Sepabeads EC-EP via covalent attachment, and the immobilized enzyme was then employed as a biocatalyst for poly(ε-caprolactone) synthesis. The enzyme loading and recovered activity of immobilized enzyme was measured to be 72 mg/g and 10.4 U/mg using p -nitrophenyl caprylate as the substrate at 80 °C, respectively. Through the optimization of reaction conditions (enzyme concentration, temperature, reaction time and medium), poly(ε-caprolactone) was obtained with 100% monomer conversion and low number-average molecular weight ( M n < 1300 g/mol). Further, the immobilized enzyme exhibited excellent reusability, with monomer conversion values exceeding 75% during 15 batch reactions. Finally, poly(ε-caprolactone) was enzymatically synthesized with an isolated yield of 75% and M n value of 3005 g/mol in a gram-scale reaction.
机译:开发有效的固定化酶对提高聚(ε-己内酯)合成中酶的操作稳定性具有重要意义。在本文中,古细菌Archaeoglobus fulgidus的嗜热酯酶AFEST成功地通过共价键固定在环氧载体Sepabeads EC-EP上,然后将该固定酶用作聚(ε-己内酯)合成的生物催化剂。以对硝基苯基辛酸酯为底物在80°C下测得的酶负载量和固定化酶的恢复活性分别为72 mg / g和10.4 U / mg。通过优化反应条件(酶浓度,温度,反应时间和介质),获得了具有100%单体转化率和低数均分子量(M n <1300 g / mol)的聚(ε-己内酯)。此外,固定化的酶表现出优异的可重复使用性,在15批反应中单体转化率超过75%。最后,在克规模的反应中,酶促合成了聚(ε-己内酯),分离产率为75%,M n值为3005 g / mol。

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