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Improved thermostability and enzyme activity of a recombinant phyA mutant phytase from Aspergillus niger N25 by directed evolution and site-directed mutagenesis

机译:通过定向的演化和定点诱变从曲霉NE1中改善重组植物突变体植物植物的热稳定性和酶活性

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We previously constructed three recombinant phyA mutant strains (PP-NPm-8, PP-NPep-6A and I44E/T252R-PhyA), showing improved catalytic efficiency or thermostability of Aspergillus niger N25 phytase, by error-prone PCR or site-directed mutagenesis. In this study, directed evolution and site-directed mutagenesis were further applied to improve the modified phytase properties. After one-round error-prone PCR for phytase gene of PP-NPep-6A, a single transformant, T195L/Q368E/F376Y, was obtained with the significant improvements in catalytic efficiency and thermostability. The phytase gene of T195L/Q368E/F376Y, combined with the previous mutant phytase genes of PP-NPep-6A, PP-NPm-8 and I44E/T252R-PhyA, was then sequentially modified by DNA shuffling. Three genetically engineered strains with desirable properties were then obtained, namedQ172R, Q172R/K432R andQ368E/K432R. Among them, Q172R/K432R showed the highest thermostability with the longest half-life and the greatest remaining phytase activity after heat treatment, while Q368E/K432R showed the highest catalytic activity. Five substitutions (Q172R, T195L, Q368E, F376Y, K432R) identified from random mutagenesis were added sequentially to the phytase gene of PP-NPep-6A to investigate how the mutant sites influence the properties of phytase. Characterization and structural analysis demonstrated that these mutations could produce cumulative or synergistic improvements in thermostability or catalytic efficiency of phytase.
机译:我们以前构建了三种重组植物突变体菌株(PP-NPM-8,PP-NPEP-6A和I44E / T252R-PHYA),显示出易于PCR或定向诱变的曲霉N25植酸酶的催化​​效率或热稳定性。 。在该研究中,进一步应用定向演​​化和定向诱变以改善改性的植酸酶性质。在PP-NPEP-6a的植酸酶基因的一轮易于易于PCR后,通过显着改善催化效率和热稳定性,获得单一转化剂T195L / Q368E / F376Y。然后通过DNA洗涤顺序地修饰了T195L / Q368E / F376Y的植酸酶基因,与先前的PP-NPEP-6A,PP-NPM-8和I444E / T244R-PHYA的突变体植酸酶基因组合。然后获得具有所需性质的三种转基因菌株,NamedQ172R,Q172R / K432R和Q 368E / K432R。其中,Q172R / K432R呈现最高的热稳定性,热处理后的半衰期最长和最大的植酸酶活性,而Q368E / K432R催化活性最高。从随机诱变中鉴定的五种取代(Q172R,T195L,Q368E,F376Y,K432R)依次向PP-NPEP-6A的植酸酶基因中添加,以研究突变位点如何影响植酸酶的性质。表征和结构分析表明,这些突变可以产生富集性或植酸酶催化效率的累积或协同改善。

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