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Metagenomic approach for the isolation of a thermostable β-galactosidase with high tolerance of galactose and glucose from soil samples of Turpan Basin

机译:从吐鲁番盆地土壤样品中分离出具有高耐受性的半乳糖和葡萄糖的热稳定β-半乳糖苷酶的元基因组学方法

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Background β-Galactosidases can be used to produce low-lactose milk and dairy products for lactose intolerant people. Although commercial β-galactosidases have outstanding lactose hydrolysis ability, their thermostability is low, and reaction products have strong inhibition to these enzymes. In addition, the β-galactosidases possessing simultaneously high thermostability and tolerance of galactose and glucose are still seldom reported until now. Therefore, identification of novel β-galactosidases with high thermostability and tolerance to reaction products from unculturable microorganisms accounting for over 99% of microorganisms in the environment via metagenomic strategy is still urgently in demand. Results In the present study, a novel β-galactosidase (Gal308) consisting of 658 amino acids was identified from a metagenomic library from soil samples of Turpan Basin in China by functional screening. After being overexpressed in Escherichia coli and purified to homogeneity, the enzymatic properties of Gal308 with N-terminal fusion tag were investigated. The recombinant enzyme displayed a pH optimum of 6.8 and a temperature optimum of 78°C, and was considerably stable in the temperature range of 40°C - 70°C with almost unchangeable activity after incubation for 60?min. Furthermore, Gal308 displayed a very high tolerance of galactose and glucose, with the highest inhibition constant Ki,gal (238?mM) and Ki,glu (1725?mM) among β-galactosidases. In addition, Gal308 also exhibited high enzymatic activity for its synthetic substrate o-nitrophenyl-β-D-galactopyranoside (ONPG, 185 U/mg) and natural substrate lactose (47.6 U/mg). Conclusion This study will enrich the source of β-galactosidases, and attract some attentions to β-galactosidases from extreme habitats and metagenomic library. Furthermore, the recombinant Gal308 fused with 156 amino acids exhibits many novel properties including high activity and thermostability at high temperatures, the pH optimum of 6.8, high enzyme activity for lactose, as well as high tolerance of galactose and glucose. These properties make it a good candidate in the production of low-lactose milk and dairy products after further study.
机译:背景β-半乳糖苷酶可用于生产乳糖不耐症人群的低乳糖牛奶和乳制品。尽管市售的β-半乳糖苷酶具有出色的乳糖水解能力,但其热稳定性低,并且反应产物对这些酶具有强烈的抑制作用。另外,至今仍很少报道同时具有高热稳定性和半乳糖和葡萄糖耐受性的β-半乳糖苷酶。因此,仍然迫切需要通过宏基因组学方法鉴定具有高热稳定性和对来自不可培养微生物的反应产物具有耐受性的新型β-半乳糖苷酶,所述不可培养微生物占环境中超过99%的微生物。结果在本研究中,通过功能筛选从中国吐鲁番盆地土壤样品的宏基因组库中鉴定了由658个氨基酸组成的新型β-半乳糖苷酶(Gal308)。在大肠杆菌中过表达并纯化至均质后,研究了具有N末端融合标签的Gal308的酶学性质。重组酶的最适pH值为6.8,最适温度为78°C,在40°C-70°C的温度范围内稳定,孵育60分钟后几乎保持不变。此外,Gal308对半乳糖和葡萄糖的耐受性非常高,抑制常数K i,gal (238?mM)和K i,glu (1725?mM)最高)在半乳糖苷酶中。此外,Gal308还对其合成底物邻硝基苯基-β-D-吡喃半乳糖苷(ONPG,185 U / mg)和天然底物乳糖(47.6 U / mg)表现出高酶活性。结论本研究将丰富β-半乳糖苷酶的来源,并引起来自极端生境和宏基因组库的β-半乳糖苷酶的关注。此外,融合有156个氨基酸的重组Gal308具有许多新特性,包括高温下的高活性和热稳定性,最适pH值为6.8,对乳糖的酶活性高以及对半乳糖和葡萄糖的高耐受性。经过进一步研究,这些特性使其成为生产低乳糖牛奶和乳制品的理想选择。

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