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用于制备高果糖糖浆的具有高比活性和蔗糖耐受能力的sp. w5种的一种转化酶的鉴定与固定化

Identification and Immobilization of an Invertase With High Specific Activity and Sucrose Tolerance Ability of sp. w5 for High Fructose Syrup Preparation.

作者信息

Zhou Gang, Peng Can, Liu Xiaosa, Chang Fei, Xiao Yazhong, Liu Juanjuan, Fang Zemin

机构信息

School of Life Sciences, Anhui University, Hefei, China.

Anhui Key Laboratory of Modern Biomanufacturing, Hefei, China.

出版信息

Front Microbiol. 2020 Apr 9;11:633. doi: 10.3389/fmicb.2020.00633. eCollection 2020.

Abstract

Invertases catalyze the hydrolysis of sucrose into fructose and glucose and can be employed as an alternative in producing high fructose syrup. In this study, we reported the heterologous expression of an invertase gene () of sp. w5 in . GspInv activity reached 147.6 ± 0.4 U/mL after 5 days of methanol induction. GspInv is invertase with a high specific activity of 2,776.1 ± 124.2 U/mg toward sucrose. GspInv showed high tolerance to sucrose ( = 1.2 M), glucose ( > 2 M), fructose ( = 1.5 M), and a variety of metal ions that make it an ideal candidate for high fructose syrup production. A carbohydrate-binding module was sequence-optimized and fused to the N-terminus of GspInv. The fusion protein had the highest immobilization efficiency at room temperature within 1 h adsorption, with 1 g of cellulose absorption up to 8,000 U protein. The cellulose-immobilized fusion protein retained the unique properties of GspInv. When applied in high fructose syrup preparation by using 1 M sucrose as the substrate, the sucrose conversion efficiency of the fused protein remained at approximately 95% after 50 h of continuous hydrolysis on a packed bed reactor. The fused protein can also hydrolyze completely the sucrose in sugarcane molasses. Our results suggest that GspInv is an unusual invertase and a promising candidate for high fructose syrup preparation.

摘要

转化酶催化蔗糖水解成果糖和葡萄糖,可作为生产高果糖糖浆的替代酶。在本研究中,我们报道了嗜热栖热菌(Thermus thermophilus)w5菌株的一种转化酶基因(GspInv)在毕赤酵母(Pichia pastoris)中的异源表达。甲醇诱导5天后,GspInv活性达到147.6±0.4 U/mL。GspInv是一种对蔗糖具有2776.1±124.2 U/mg高比活性的转化酶。GspInv对蔗糖(Km = 1.2 M)、葡萄糖(Km > 2 M)、果糖(Km = 1.5 M)以及多种金属离子表现出高耐受性,使其成为生产高果糖糖浆的理想候选酶。对一个碳水化合物结合模块进行序列优化,并将其融合到GspInv的N端。该融合蛋白在室温下吸附1小时内具有最高的固定化效率,1 g纤维素可吸附高达8000 U的蛋白。纤维素固定化的融合蛋白保留了GspInv的独特性质。当以1 M蔗糖为底物用于制备高果糖糖浆时,在填充床反应器中连续水解50小时后,融合蛋白的蔗糖转化效率仍保持在约95%。该融合蛋白还能完全水解甘蔗废蜜中的蔗糖。我们的结果表明,GspInv是一种不同寻常的转化酶,是制备高果糖糖浆的有前景的候选酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae42/7160231/92bdbc1f4a4b/fmicb-11-00633-g001.jpg

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