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A rational design for trypsin-resistant improvement of Armillariella tabescens beta-mannanase MAN47 based on molecular structure evaluation

机译:基于分子结构评估的抗胰蛋白酶改良棉铃虫β-甘露聚糖酶MAN47的合理设计

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Protease resistance of enzymes is required for the feed industry because of the presence of secretary proteases in the digestive tract. In this study, we report a rational method for protease-resistance improvement of enzymes based on molecular structure evaluation. The trypsin-resistance of beta-mannanase MAN47 from Armillariella tabescens was investigated. Twelve tryptic sites within it were ordered by their positions in three-dimensional space from external to internal. Except of R144, R192 and R261, which were either conserved or highly related to the catalytic activity, the top external residue K280 and the most internal residue K371 were selected. With conducting computational design via H-bond analysis and molecular dynamics simulations, optimal mutants of K280N and K371Q were predicted. Meanwhile, a triple mutant K280N/K107H/R102N was also predicted. Half-lives of mutants K280N, K280N/K107H/R102N, K371Q and wild-type enzymes which were all pre-treated by trypsin at 40 degrees C were determined 185 min, 285 min, 102 min and 100 min, respectively. In addition, the temperature-activity and pH-activity profiles revealed that the mutations we designed had no obvious influence on the catalytic activity of the enzyme. Our results proved that trypsin-resistance of an enzyme could be improved by molecular rational evolution of homology modeling and molecular dynamics simulations
机译:饲料行业需要酶的蛋白酶抗性,因为消化道中存在秘书蛋白酶。在这项研究中,我们报告了一种基于分子结构评估的提高蛋白酶耐蛋白酶性的合理方法。研究了来自棉铃虫的β-甘露聚糖酶MAN47对胰蛋白酶的抵抗力。其中十二个胰蛋白酶部位是按其在三维空间中从外到内的顺序排列的。除了保守或与催化活性高度相关的R144,R192和R261外,选择了顶部外部残基K280和内部最残基K371。通过H键分析和分子动力学模拟进行计算设计,预测了K280N和K371Q的最佳突变体。同时,还预测了三重突变体K280N / K107H / R102N。分别在185分钟,285分钟,102分钟和100分钟下测定分别用胰蛋白酶预处理的突变体K280N,K280N / K107H / R102N,K371Q和野生型酶的半衰期。另外,温度-活性和pH-活性概况表明,我们设计的突变对酶的催化活性没有明显的影响。我们的结果证明,通过同源性建模和分子动力学模拟的分子合理进化可以提高酶的胰蛋白酶抵抗力

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