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不同条件下固定在沸石中的重组β-葡萄糖苷酶的热稳定性提高。

Improvement in the Thermostability of a Recombinant β-Glucosidase Immobilized in Zeolite under Different Conditions.

机构信息

Departamento de Ingenierías Química y Bioquímica, Tecnológico Nacional de México (TecNM)-Instituto Tecnológico de Durango (ITD), Durango 34080, Mexico.

Departamento de Ingeniería en Tecnología Ambiental, Universidad Politécnica de Durango, Durango 34300, Mexico.

出版信息

Molecules. 2022 Jun 26;27(13):4105. doi: 10.3390/molecules27134105.

Abstract

β-Glucosidase is part of the cellulases and is responsible for degrading cellobiose into glucose, a compound that can be used to produce biofuels. However, the use of the free enzyme makes the process more expensive. Enzyme immobilization improves catalytic characteristics and supports, such as zeolites, which have physical-chemical characteristics and ion exchange capacity that have a promising application in the biotechnological industry. This research aimed to immobilize by adsorption a recombinant β-glucosidase from , obtained in BL21 (DE3), in a commercial zeolite. A Box Behnken statistical design was applied to find the optimal immobilization parameters, the stability against pH and temperature was determined, and the immobilized enzyme was characterized by SEM. The highest enzymatic activity was determined with 100 mg of zeolite at 35 °C and 175 min. Compared to the free enzyme, the immobilized recombinant β-glucosidase presented greater activity from pH 2 to 4 and greater thermostability. The kinetic parameters were calculated, and a lower K value was obtained for the immobilized enzyme compared to the free enzyme. The obtained immobilization parameters by a simple adsorption method and the significant operational stability indicate promising applications in different fields.

摘要

β-葡萄糖苷酶是纤维素酶的一部分,负责将纤维二糖降解为葡萄糖,葡萄糖是一种可用于生产生物燃料的化合物。然而,使用游离酶会使过程更加昂贵。酶固定化可以改善催化特性,而沸石等载体具有物理化学特性和离子交换能力,在生物技术行业中有很好的应用前景。本研究旨在通过吸附的方式将在 BL21(DE3)中获得的 重组β-葡萄糖苷酶固定在商业沸石上。应用 Box-Behnken 统计设计来寻找最佳固定化参数,测定其对 pH 和温度的稳定性,并通过 SEM 对固定化酶进行表征。在 35°C 和 175min 的条件下,当使用 100mg 沸石时,酶的活性最高。与游离酶相比,固定化的重组β-葡萄糖苷酶在 pH2 到 4 之间具有更高的活性和更好的热稳定性。计算了动力学参数,与游离酶相比,固定化酶的 K 值较低。通过简单的吸附方法获得的固定化参数和显著的操作稳定性表明,它在不同领域有很好的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ecd/9268045/1270d3ec16ce/molecules-27-04105-g001.jpg

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