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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Identification of amino acid residues responsible for increased thermostability of feruloyl esterase A from Aspergillus niger using the PoPMuSiC algorithm
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Identification of amino acid residues responsible for increased thermostability of feruloyl esterase A from Aspergillus niger using the PoPMuSiC algorithm

机译:使用PoPMuSiC算法鉴定黑曲霉中提高阿魏酸酯酶A的热稳定性的氨基酸残基

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摘要

Feruloyl esterases are key enzymes involved in the complete hydrolysis of hemicellulose. In order to improve the thermostability of feruloyl esterase A (FaeA) from Aspergillus niger CIB 423.1, the PoPMuSiC algorithm was applied to predict the folding free energy change (ΔΔG) of amino acid substitutions. Four amino acid substitutions (S92A, D93G, D174A and S187F) were introduced into the enzyme by site-directed mutagenesis and the enzymes were produced in Pichia pastoris KM71. No obvious changes in thermal stability resulted from substitutions S92A and D174A, but, compared to the wild-type enzyme which has a half-life of inactivation of 8min, the half-lives of enzymes with a D93G or S187F substitution increased to 9.4 and 60.5min, respectively. The double mutant D93G/S187F displayed a synergistic effect with a t1/2 value of 77.0min. It also displayed over 10-fold increase in catalytic turnover frequency. The result will benefit further investigation of the thermostability of feruloyl esterase A.
机译:阿魏酸酯酶是参与半纤维素完全水解的关键酶。为了提高黑曲霉CIB 423.1中阿魏酸酯酶A(FaeA)的热稳定性,采用PoPMuSiC算法预测氨基酸取代的折叠自由能变化(ΔΔG)。通过定点诱变将四个氨基酸取代(S92A,D93G,D174A和S187F)引入酶中,并在巴斯德毕赤酵母KM71中产生该酶。取代S92A和D174A不会导致热稳定性发生明显变化,但是与半衰期为8分钟的野生型酶相比,具有D93G或S187F取代的酶的半衰期增加到9.4和60.5分钟,分别。双突变体D93G / S187F表现出协同作用,t1 / 2值为77.0min。它还显示出催化转换频率增加了10倍以上。该结果将有助于进一步研究阿魏酸酯酶A的热稳定性。

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