Martínez Duniesky, Cutiño-Avila Bessy, Pérez Enrique Rosendo, Menéndez Carmen, Hernández Lázaro, Del Monte-Martínez Alberto
Fermentation Laboratory, Center for Genetic Engineering and Biotechnology Sancti Spíritus (CIGBSS), Circunvalante Norte S/N, Olivos 3, Apartado Postal 83, Sancti Spíritus 60200, Cuba.
Food Chem. 2014 Feb 15;145:826-31. doi: 10.1016/j.foodchem.2013.08.073. Epub 2013 Aug 28.
Thermotoga maritima exo-β-fructosidase (BfrA) secreted by a recombinant Pichia pastoris strain was optimally immobilised on Glyoxyl-Sepharose CL 4B using the Rational Design of Immobilised Derivatives (RDID) strategy. Covalent attachment of the N-glycosylated BfrA onto the activated support at pH 10 allowed total recovery of the loaded enzyme and its activity. The immobilisation process caused no variation in the catalytic properties of the enzyme and allowed further enhancement of the thermal stability. Complete inversion of cane sugar (2.04 M) in a batch stirred tank reactor at 60 °C was achieved with a productivity of 22.2 g of substrate hydrolysed/gram of biocatalyst/hour. Half-life of the immobilised enzyme of 5 days at 60 °C was determined in a continuously operated fixed-bed column reactor. Our results promote the applicability of the BfrA-immobilised biocatalyst for the complete hydrolysis of concentrated sucrose solutions under industrial conditions, especially at a high reaction temperature.
使用固定化衍生物合理设计(RDID)策略,将重组毕赤酵母菌株分泌的嗜热栖热袍菌外切-β-果糖苷酶(BfrA)最佳固定在乙醛酸-琼脂糖CL 4B上。在pH 10条件下,将N-糖基化的BfrA共价连接到活化载体上,可实现负载酶及其活性的完全回收。固定化过程未导致酶的催化特性发生变化,反而进一步提高了热稳定性。在间歇搅拌釜式反应器中,60℃下蔗糖(2.04 M)完全转化,生物催化剂的生产效率为每克生物催化剂每小时水解22.2克底物。在连续操作的固定床柱式反应器中测定了固定化酶在60℃下5天的半衰期。我们的结果促进了固定化BfrA生物催化剂在工业条件下,特别是在高反应温度下对浓缩蔗糖溶液进行完全水解的适用性。