Plant-Microbe Interactions Laboratory, Center for Genetic Engineering and Biotechnology (CIGB), Ave 31 entre 158 y 190, Apartado Postal 6162, Habana 10600, Cuba.
Microb Cell Fact. 2014 Jun 18;13:87. doi: 10.1186/1475-2859-13-87.
An ideal immobilized biocatalyst for the industrial-scale production of invert sugar should stably operate at elevated temperatures (60-70°C) and high sucrose concentrations (above 60%, w/v). Commercial invertase from the yeast Saccharomyces cerevisiae is thermolabile and suffers from substrate inhibition. Thermotoga maritima β-fructosidase (BfrA) is the most thermoactive and thermostable sucrose-hydrolysing enzyme so far identified and allows complete inversion of the substrate in highly concentrated solutions.
In this study, heat-killed Pichia pastoris cells bearing N-glycosylated BfrA in the periplasmic space were entrapped in calcium alginate beads. The immobilized recombinant yeast showed maximal sucrose hydrolysis at pH 5-7 and 90°C. BfrA was 65% active at 60°C and had no activity loss after incubation without the substrate at this temperature for 15 h. Complete inversion of cane sugar (2.04 M) at 60°C was achieved in batchwise and continuous operation with respective productivities of 4.37 and 0.88 gram of substrate hydrolysed per gram of dry beads per hour. The half-life values of the biocatalyst were 14 and 20 days when operated at 60°C in the stirred tank and the fixed-bed column, respectively. The reaction with non-viable cells prevented the occurrence of sucrose fermentation and the formation of by-products. Six-month storage of the biocatalyst in 1.46 M sucrose (pH 5.5) at 4°C caused no reduction of the invertase activity.
The features of the novel thermostable biocatalyst developed in this study are more attractive than those of immobilized S. cerevisiae cells for application in the enzymatic manufacture of inverted sugar syrup in batch and fixed-bed reactors.
用于工业规模生产转化糖的理想固定化生物催化剂应能够在高温(60-70°C)和高蔗糖浓度(60%以上,w/v)下稳定运行。来自酵母酿酒酵母的商业蔗糖酶是热不稳定的,并受到底物抑制。Thermotoga maritima β-果糖苷酶(BfrA)是迄今为止发现的最热活性和最热稳定的蔗糖水解酶,可在高浓度溶液中完全转化底物。
在这项研究中,热致死的毕赤酵母细胞在周质空间中携带 N-糖基化的 BfrA,被包埋在海藻酸钙珠中。固定化重组酵母在 pH 5-7 和 90°C 下表现出最大的蔗糖水解活性。BfrA 在 60°C 时具有 65%的活性,在该温度下没有底物孵育 15 小时后没有活性损失。在分批和连续操作中,2.04 M 的甘蔗(cane sugar)在 60°C 下完全转化,产物分别为每克干珠每小时 4.37 克和 0.88 克基质水解。当在搅拌罐和固定床柱中分别在 60°C 下运行时,生物催化剂的半衰期值分别为 14 和 20 天。非活性细胞的反应防止了蔗糖发酵和副产物的形成。在 4°C 下,将生物催化剂储存在 1.46 M 蔗糖(pH 5.5)中 6 个月,不会降低转化酶的活性。
与固定化酿酒酵母细胞相比,本研究开发的新型耐热生物催化剂的特性更适合于在批式和固定床反应器中酶法生产转化糖浆。