Jiang Ying, Wu Yue, Li Huixin
College of Resources and Environmental Sciences, Henan Agricultural University, Zhengzhou 450000, P.R. China.
College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, P.R. China.
J Microbiol Biotechnol. 2015 Dec 28;25(12):2016-23. doi: 10.4014/jmb.1502.02046.
Xylanase plays important roles in a broad range of industrial production as a biocatalyst, and its applications commonly require immobilization on supports to enhance its stability. Aluminum hydroxide, a carrier material with high surface area, has the advantages of simple and low-cost preparation and resistance to biodegradation, and can be potentially used as a proper support for xylanase immobilization. In this work, xylanase from Thermomyces lanuginosus was immobilized on two types of aluminum hydroxide particles (gibbsite and amorphous Al(OH)3) through adsorption, and the properties of the adsorbed enzymes were studied. Both particles had considerable adsorptive capacity and affinity for xylanase. Xylanase retained 75% and 64% of the original catalytic activities after adsorption to gibbsite and amorphous Al(OH)3. Both the adsorptions improved pH and thermal stability, lowered activation energy, and extended lifespan of the immobilized enzyme, as compared with the free enzyme. Xylanase adsorbed on gibbsite and amorphous Al(OH)3 retained 71% and 64% of its initial activity, respectively, after being recycled five times. These results indicated that aluminum hydroxides served as good supports for xylanase immobilization. Therefore, the adsorption of xylanase on aluminum hydroxide particles has promising potential for practical production.
木聚糖酶作为一种生物催化剂,在广泛的工业生产中发挥着重要作用,其应用通常需要固定在载体上以提高稳定性。氢氧化铝是一种具有高比表面积的载体材料,具有制备简单、成本低和抗生物降解的优点,有可能作为木聚糖酶固定化的合适载体。在这项工作中,来自嗜热栖热菌的木聚糖酶通过吸附固定在两种类型的氢氧化铝颗粒(三水铝石和无定形Al(OH)₃)上,并对吸附酶的性质进行了研究。两种颗粒对木聚糖酶都具有相当大的吸附能力和亲和力。木聚糖酶吸附到三水铝石和无定形Al(OH)₃上后,分别保留了原始催化活性的75%和64%。与游离酶相比,两种吸附都提高了pH稳定性和热稳定性,降低了活化能,并延长了固定化酶的寿命。吸附在三水铝石和无定形Al(OH)₃上的木聚糖酶在循环使用五次后,分别保留了其初始活性的71%和64%。这些结果表明氢氧化铝是木聚糖酶固定化的良好载体。因此,木聚糖酶在氢氧化铝颗粒上的吸附在实际生产中具有广阔的应用前景。