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Biocatalytic synthesis of lactosucrose using a recombinant thermostable β-fructofuranosidase from Arthrobacter sp. 10138

机译:使用remombinant热稳定β-果呋喃硫唑酯酶生物催化合成乳酸盐蔗糖酶。 10138.

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摘要

As a prebiotics, lactosucrose plays an important role in maintaining human gastrointestinal homeostasis. In this study, a thermostable enzyme from Arthrobacter sp. 10138 was screened from six β-fructofuranosidase-producing strains for the lactosucrose production and the coding gene was heterologously expressed in Escherichia coli for efficient expression. Recombinant β-fructofuranosidase was purified and biochemically characterized by MALDI-TOFMS spectrometry. The transfructosylation product by this recombinant enzyme was determined to be lactosucrose rather than other oligosaccharides or polysaccharides by HPLC and LC-MS. Efficient extracellular secretion of β-fructofuranosidase was achieved by the optimization of signal peptide and induction conditions. It was found that with the signal peptide torT, the highest extracellular activity reached 111.01 U/mL, which was 38.4-fold higher than that with the OmpA signal peptide. Under the optimal conditions (pH 6.0, temperature 50°C, enzyme amount 40 μg/ml, sucrose 150 g/L and lactose 150 g/L), 109 g/L lactosucrose was produced with a molar conversion ratio of 49.3%. Here the thermostable β-fructofuranosidase from Arthrobacter sp. 10138 can be used for efficient synthesis of lactosucrose, and this provides a good startpoint for the industrial production of lactosucrose in the future.
机译:作为益生元,乳酸乳糖在维持人胃肠稳态中起着重要作用。在该研究中,来自Arthrobacter SP的热稳定酶。从六个β-果呋喃糖苷酶产生的菌株中筛选10138,用于乳糖蔗糖产生,编码基因在大肠杆菌中异源表达,以有效表达。通过MALDI-TOFMS光谱法纯化重组β-果呋喃糖苷酶并生物化学特征。通过HPLC和LC-MS测定通过该重组酶的转晶溶胶化产物是乳糖蔗糖而不是其他低聚糖或多糖。通过优化信号肽和诱导条件,实现了β-果皮皂酶酶的高效细胞外分泌。发现,通过信号肽侵权,最高的细胞外活动达到111.01 u / ml,比与OMPA信号肽高38.4倍。在最佳条件下(pH6.0,温度50℃,酶量40μg/ ml,蔗糖150g / L和乳糖150g / L),产生109g / L乳乳菌菌,其摩尔转化比为49.3%。这里是来自Arthrobacter sp的热稳定β-果呋喃糖苷酶。 10138可用于高效合成乳酸合酶,这为未来乳酸合酶的工业生产提供了良好的出轨点。

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