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Effect of the Immobilization Strategy on the Efficiency and Recyclability of the Versatile Lipase from Ophiostoma piceae

机译:固定化策略对苦荞麦脂酶多功能脂肪酶效率和可回收性的影响

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摘要

The recombinant lipase from Ophiostoma piceae OPEr has demonstrated to have catalytic properties superior to those of many commercial enzymes. Enzymatic crudes with OPEr were immobilized onto magnetite nanoparticles by hydrophobicity (SiMAG-Octyl) and by two procedures that involve covalent attachment of the protein (mCLEAs and AMNP-GA), giving three nanobiocatalysts with different specific activity in hydrolysis of p-nitrophenyl butyrate (pNPB) and good storage stability at 4 °C over a period of 4 months. Free OPEr and the different nanobiocatalysts were compared for the synthesis of butyl esters of volatile fatty acids C4 to C7 in reactions containing the same lipase activity. The esterification yields and the reaction rates obtained with AMNP-GA-OPEr were in general higher or similar to those observed for the free enzyme, the mCLEAs-OPEr, and the non-covalent preparation SiMAG-Octyl-OPEr. The time course of the esterification of the acids C4 to C6 catalyzed by AMNP-GA-OPEr was comparable. The synthesis of the C7 ester was slower but very efficient, admitting concentrations of heptanoic acid up to 1 M. The best 1-butanol: acid molar ratio was 2:1 for all the acids tested. Depending on the substrate, this covalent preparation of OPEr maintained 80–96% activity over 7 cycles, revealing its excellent properties, easy recovery and recycling, and its potential to catalyze the green synthesis of chemicals of industrial interest.
机译:已证明来自Ophiostoma piceae OPEr的重组脂肪酶具有优于许多商业酶的催化特性。通过疏水性(SiMAG-Octyl)和涉及蛋白质共价连接的两种程序(mCLEAs和AMNP-GA)将具有OPEr的酶促原油固定在磁铁矿纳米颗粒上,得到三种在对硝基苯基丁酸的水解中具有不同比活性的纳米生物催化剂( pNPB)和在4°C下4个月内的良好存储稳定性。在含有相同脂肪酶活性的反应中,比较了游离OPEr和不同的纳米生物催化剂合成挥发性脂肪酸C4至C7的丁酯的能力。用AMNP-GA-OPEr获得的酯化收率和反应速率通常与游离酶,mCLEAs-OPEr和非共价制剂SiMAG-Octyl-OPEr所观察到的更高或相似。由AMNP-GA-OPEr催化的酸C4至C6酯化的时间过程是可比的。 C7酯的合成速度较慢,但​​效率很高,允许庚酸的浓度高达1M。对于所有测试的酸,最佳的1-丁醇:酸摩尔比为2:1。取决于底物,这种共价的OPEr制剂在7个循环中保持80-96%的活性,显示出其优异的性能,易于回收和再循环以及催化绿色工业感兴趣的化学品的潜力。

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