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Improved activity of alpha-L-arabinofuranosidase from Geobacillus vulcani GS90 by directed evolution: Investigation on thermal and alkaline stability

机译:通过定向演化从Geobacillusulcani GS90改善α-L-阿拉伯呋喃醇素酶的活性:热和碱性稳定性研究

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alpha-L-Arabinofuranosidase (Abf) is a potential enzyme because of its synergistic effect with other hemicellulases in agro-industrial field. In this study, directed evolution was applied to Abf from Geobacillus vulcani GS90 (GvAbf) using one round error-prone PCR and constructed a library of 73 enzyme variants of GvAbf. The activity screening of the enzyme variants was performed on soluble protein extracts using p-nitrophenyl alpha-L-arabinofuranoside as substrate. Two high activity displaying variants (GvAbf L307S and GvAbf Q90H/L307S) were selected, purified, partially characterized, and structurally analyzed. The specific activities of both variants were almost 2.5-fold more than that of GvAbf. Both GvAbf variants also exhibited higher thermal stability but lower alkaline stability in reference to GvAbf. The structural analysis of GvAbf model indicated that two mutation sites Q90H and L307S in both GvAbf variants are located in TIM barrel domain, responsible for catalytic action in many Glycoside Hydrolase Families including GH51. The structure of GvAbf model displayed that the position of L307S mutation is closer to the catalytic residues of GvAbf compared with Q90H mutation and also L307S mutation is conserved in both variants of GvAbf. Therefore, it was hypothesized that L307S amino acid substitution may play a critical role in catalytic activity of GvAbf. (C) 2018 International Union of Biochemistry and Molecular Biology, Inc.
机译:α-L-阿拉伯呋喃膦酸酶(ABF)是一种潜在的酶,因为其在农业工业领域的其他半纤维素酶的协同效应。在该研究中,使用一种圆形误差PCR从Geobacillus ulcani GS90(GVABF)应用于ABF,并构建了GVABF的73个酶变体的文库。使用P-硝基苯甲醛α-1-阿拉伯脲作为底物对酶变体的活性筛选对可溶性蛋白质提取物进行。选择,纯化,部分表征和在结构分析中选择两种高活性显示变体(GVABF L307S和GVABF Q90H / L307S)。两种变体的特定活动比GVABF的特定活动差不多为2.5倍。 GVABF变体两者也表现出较高的热稳定性,但参照GVABF较低的碱性稳定性。 GVABF模型的结构分析表明,GVABF变体中的两个突变位点Q90H和L307S位于TIM桶结构域中,负责许多糖苷水解酶家族中的催化作用,包括GH51。与Q90H突变相比,L307S突变的位置与GVABF的催化残基更接近GVABF模型的结构,并且在GVABF的两种变体中,L307S突变也是保守的。因此,假设L307S氨基酸取代可以在GVABF的催化活性中发挥关键作用。 (c)2018年国际生物化学和分子生物学联盟,Inc。

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