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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Enhanced catalytic stability of lipase immobilized on oxidized and disulfide-rich eggshell membrane for esters hydrolysis and transesterification
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Enhanced catalytic stability of lipase immobilized on oxidized and disulfide-rich eggshell membrane for esters hydrolysis and transesterification

机译:增强脂肪酶的脂肪酶的催化稳定性固定在氧化和二硫化硫化蛋壳膜上,用于酯水解和酯交换

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Eggshell membrane (ESM) is an industrial waste that is available in abundance from food industry. Present study investigated the physicochemical properties of oxidized ESM and compared the efficiency of ESM and oxidized ESM as carrier for Burkholderia cepacia lipase (BCL) used in esters hydrolysis and transesterification. Following oxidation treatment, FTIR analysis and Ellman's assay showed amino acid cysteine in ESM was oxidized to form disulfide bond-containing cystine. In addition, AFM analysis showed ESM which exhibited a highly porous filamentous structure appeared to be coalesce following oxidation treatment. Oxidized ESM also showed reduced porosity (38.67%) in comparison to native ESM (51.65%). BCL were successfully immobilized on oxidized ESM through carrier activation method (enzyme loading of 5.01 mg protein/g oxidized ESM). These immobilized lipase demonstrated significantly (P < 0.05) enhanced catalytic stability with close to 100% of initial hydrolysis (12.03 +/- 0.29 mmol/min/g) activity; and more than 85% of its initial transesterification (7.83 +/- 0.05) activity for at least 10 consecutive runs. Enhanced catalytic stability of BCL immobilized on oxidized ESM might be due to stabilization of the protein structure in oxidized ESM by disulfide bonds which helped formation of a stable bonding with BCL. (C) 2017 Elsevier B.V. All rights reserved.
机译:EggShell膜(ESM)是一种工业废物,可从食品行业丰富。目前研究研究了氧化ESM的物理化学性质,并将ESM和氧化ESM的效率与酯水解和酯交换酯化的Burkholderia Cepacia脂肪酶(Bcl)的载体进行了比较。在氧化处理之后,FTIR分析和Ellman的测定显示ESM中的氨基酸半胱氨酸被氧化以形成含二硫键的胱氨酸。此外,AFM分析显示ESM,其表现出高度多孔的丝状结构,似乎是氧化处理后的聚结。与天然ESM(51.65%)相比,氧化ESM还表现出降低的孔隙率(38.67%)。通过载体活化法(酶负载为5.01mg蛋白质/ g氧化ESM),成功地固定在氧化ESM上的固定化。这些固定化脂肪酶显着显着(P <0.05)增强的催化稳定性,初始水解的100%(12.03 +/- 0.29mmol / min / g)活性;超过85%的初始酯交换(7.83 +/- 0.05)的活动至少连续10次运行。增强了在氧化ESM上固定的BCl的催化稳定性可能是由于通过二硫键稳定蛋白质结构,这有助于形成与BCl的稳定键合。 (c)2017年Elsevier B.V.保留所有权利。

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