首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Enhancement of Thermostability and Kinetic Efficiency of Aspergillus niger PhyA Phytase by Site-Directed Mutagenesis
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Enhancement of Thermostability and Kinetic Efficiency of Aspergillus niger PhyA Phytase by Site-Directed Mutagenesis

机译:定点诱变提高黑曲霉PhyA植酸酶的热稳定性和动力学效率

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Phytase efficiently catalyzes the hydrolysis of phytate to phosphate; it can be utilized as an animal supplement to provide animals their nutrient requirements for phosphate and to mitigate environmental pollution caused by unutilized feed phosphate. Owing to animal feed being commonly pelleted at 70 to 90 A degrees C, phytase with a sufficiently high thermal stability is desirable. Based on the crystal structure of PhyA and bioinformatics analysis at variant heat treatments, 12 single and multiple mutants were introduced by site-directed mutagenesis in order to improve phytase thermostability. Mutated constructs were expressed in Pichia pastoris. The manipulated phytases were purified; their biochemical and kinetic investigation revealed that while the thermostability of six mutants was improved, P9 (T314S Q315R V62N) and P12 (S205N S206A T151A T314S Q315R) showed the highest heat stability (P < 0.05) with 24 and 22.6 % greater retention, respectively, compared with the PhyA of the wild type at 80 A degrees C. The K (m) value of the improved thermostable P9 and P12 mutant enzymes for sodium phytate were 35 and 20 % lower (P < 0.05) with respect to the wild-type enzyme. In conclusion, it is feasible to simultaneously improve the thermostability and the catalytic efficiency of phytase to be used as an animal feed supplement.
机译:植酸酶有效地催化肌醇六磷酸水解为磷酸盐;它可以用作动物补品,为动物提供磷酸盐所需的营养,并减轻未利用的饲料磷酸盐对环境的污染。由于通常在70至90 A的温度下将动物饲料制成颗粒,因此需要具有足够高热稳定性的植酸酶。基于PhyA的晶体结构和不同热处理条件下的生物信息学分析,通过定点诱变引入了12个单突变体和多个突变体,以提高植酸酶的热稳定性。突变的构建体在巴斯德毕赤酵母中表达。纯化操作过的植酸酶;他们的生化和动力学研究表明,虽然改善了六个突变体的热稳定性,但P9(T314S Q315R V62N)和P12(S205N S206A T151A T314S Q315R)表现出最高的热稳定性(P <0.05),保留率分别提高了24和22.6%。与野生型PhyA在80 A时相比。改良的耐高温植酸钠P9和P12突变体酶的K(m)值分别比野生型低35%和20%(P <0.05)。型酶。总之,同时提高用作动物饲料补充剂的植酸酶的热稳定性和催化效率是可行的。

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