Shukla Rushit J, Singh Satya P
UGC-CAS Department of Biosciences, Saurashtra University, Rajkot 360 005 Gujarat, India.
UGC-CAS Department of Biosciences, Saurashtra University, Rajkot 360 005 Gujarat, India.
Int J Biol Macromol. 2016 Apr;85:208-16. doi: 10.1016/j.ijbiomac.2015.12.079. Epub 2015 Dec 29.
One of the approaches to address the issues of the cost of production, recovery and reusability of the extremozymes can be immobilization. In this report, we describe immobilization of an α-amylase from Laceyella sacchari TSI-2 and characterization of the immobilized enzyme. The enzyme was immobilized on 6 different matrices using entrapment, ionic binding and surface adsorption. The DEAE cellulose with glutaraldehyde crosslinking appeared most effective for the immobilization with high operational stability. While the temperature optima and thermal stability of the immobilized α-amylase shifted from 60 to 70°C with increased half-life, the pH optima remain unaltered while pH stability was shifted from 6 to 7. The stability of the immobilized enzyme improved in solvents. The enzyme catalysis in surfactants enhanced, while the Km and Vmax were reduced after immobilization. The structural features of the immobilized enzyme as probed by FT-IR established the role of aliphatic amines, esters and alkenes in immobilization. The starch hydrolysis efficiency of the immobilized enzyme was 15.55%. The immobilized enzyme in various detergents was highly efficient in removing the starch stain from cotton cloth. Taken together, the α-amylase turned more stable after immobilization and can be a favored choice for applications.
解决极端酶生产成本、回收和可重复使用性问题的方法之一是固定化。在本报告中,我们描述了来自嗜糖莱西氏菌TSI-2的一种α-淀粉酶的固定化及其固定化酶的特性。该酶通过包埋、离子结合和表面吸附固定在6种不同的基质上。经戊二醛交联的DEAE纤维素在固定化方面表现出最高的效率,且具有高操作稳定性。固定化α-淀粉酶的最适温度和热稳定性从60℃转变为70℃,半衰期增加,而最适pH值保持不变,pH稳定性从pH 6转变为pH 7。固定化酶在溶剂中的稳定性提高。在表面活性剂中酶催化作用增强,而固定化后Km和Vmax降低。通过傅里叶变换红外光谱(FT-IR)探测的固定化酶的结构特征确定了脂肪胺、酯和烯烃在固定化中的作用。固定化酶的淀粉水解效率为15.55%。固定化酶在各种洗涤剂中对去除棉布上的淀粉污渍非常有效。综上所述,α-淀粉酶固定化后变得更稳定,可能是应用的理想选择。