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提高淀粉水解真菌淀粉酶的催化性能:利用琼脂作为有机基质进行固定化。

Improvement of catalytic properties of starch hydrolyzing fungal amyloglucosidase: Utilization of agar-agar as an organic matrix for immobilization.

机构信息

Department of Microbiology, Hazara University, Mansehra, Khyber Pakhtunkhwa, Pakistan.

Department of Biotechnology, Shaheed Benazir Bhutto University, Sheringal, Dir (Upper), Khyber Pakhtunkhwa, Pakistan.

出版信息

Carbohydr Res. 2019 Dec 1;486:107860. doi: 10.1016/j.carres.2019.107860. Epub 2019 Nov 1.

Abstract

In this study, amyloglucosidase was immobilized within agar-agar through entrapment technique for the hydrolysis of soluble starch. Enzymatic activities of soluble and entrapped amyloglucosidase were compared using soluble starch as a substrate. Partially purified enzyme was immobilized and maximum immobilization yield (80%) was attained at 40 gL of agar-agar. Enzyme catalysis reaction time shifted from 5.0 min to 10 min after immobilization. Similarly, a five-degree shift in temperature (60 °C-65 °C) and a 0.5 unit increase in pH (pH-5.0 to pH-5.5) were also observed. Substrate saturation kinetics revealed that K of entrapped amyloglucosidase increased from 1.41 mg ml (soluble enzyme) to 3.39 mg ml (immobilized enzyme) whereas, V decreased from 947 kU mg (soluble enzyme) to 698 kU mg (immobilized enzyme). Entrapped amyloglucosidase also exhibited significant catalytic performance during thermal and storage stability when compared with soluble enzyme. Reusability of entrapped amyloglucosidase for hydrolysis of soluble starch demonstrated its recycling efficiency up to six cycles which is an exceptional characteristic for continuous bioprocessing of soluble starch into glucose.

摘要

在这项研究中,通过包埋技术将糖化酶固定在琼脂糖中,以水解可溶性淀粉。使用可溶性淀粉作为底物比较了可溶性和包埋糖化酶的酶活性。部分纯化的酶被固定化,在琼脂糖浓度为 40 g/L 时达到最大固定化产率(80%)。固定化后,酶催化反应时间从 5.0 分钟延长至 10 分钟。同样,温度(60°C-65°C)也发生了 5 度的偏移,pH 值(pH-5.0 到 pH-5.5)也增加了 0.5 个单位。底物饱和动力学表明,包埋糖化酶的 K 值从 1.41mg/ml(可溶性酶)增加到 3.39mg/ml(固定化酶),而 V 从 947 kU/mg(可溶性酶)降低到 698 kU/mg(固定化酶)。与可溶性酶相比,包埋糖化酶在热稳定性和储存稳定性方面也表现出显著的催化性能。与可溶性淀粉的水解相比,包埋糖化酶的重复使用性表明其在六次循环中的回收效率很高,这是连续生物处理可溶性淀粉成葡萄糖的特殊特征。

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