Celem Evran Biçak, Onal Seçil
Ege University, Faculty of Science, Biochemistry Department, Bornova-Izmir, Turkey.
Artif Cells Blood Substit Immobil Biotechnol. 2009;37(5):195-202. doi: 10.1080/10731190903198822. Epub 2009 Aug 31.
There is a great demand for using phytases to reduce phytate content in animal feed stuffs and food for human consumption. Industrial application of phytase requires efficient methods to immobilize the enzyme, yielding a biocatalyst with high activity and stability compared to the free enzyme. In the present study, phytase was immobilized on Sepabead EC-EP and then used in the biodegradation of soymilk phytate. The immobilized enzyme exhibited an activity of 0.1 U per g of carrier and activity yield of 70.83%. Optimum temperature and pH for the immobilized enzyme were 55 degrees C and 5.5, respectively. Both the enzymes were stable between pH 3.0-8.0 and below 70 degrees C. Kinetic parameters(K(m) and V(max)) and the usability of the immobilized enzyme were determined. The immobilized enzyme hydrolyzed 65% of soymilk phytate in 8 h at 60 degrees C, as compared with 56% hydrolysis observed for the native enzyme over the same period of time.
使用植酸酶来降低动物饲料和人类食用食品中的植酸盐含量有着巨大的需求。植酸酶的工业应用需要高效的方法来固定化该酶,从而产生一种与游离酶相比具有高活性和稳定性的生物催化剂。在本研究中,植酸酶被固定在Sepabead EC-EP上,然后用于豆奶植酸盐的生物降解。固定化酶的活性为每克载体0.1 U,活性回收率为70.83%。固定化酶的最适温度和pH分别为55℃和5.5。两种酶在pH 3.0 - 8.0之间以及70℃以下都很稳定。测定了动力学参数(K(m)和V(max))以及固定化酶的可用性。在60℃下,固定化酶在8小时内水解了65%的豆奶植酸盐,而天然酶在相同时间内的水解率为56%。