首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Site-directed mutagenesis improves the thermostability and catalytic efficiency of aspergillus niger N25 phytase mutated by I44E and T252R
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Site-directed mutagenesis improves the thermostability and catalytic efficiency of aspergillus niger N25 phytase mutated by I44E and T252R

机译:定点诱变可提高被I44E和T252R突变的黑曲霉N25植酸酶的热稳定性和催化效率

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Aspergillus niger phytase (PhyA) has been used as a feed supplement to improve the bioavailability of phytate phosphorus to swine and poultry. However, it is unable to maintain its stability due to high temperature during the feed pelleting process. In this study, we performed site-directed mutagenesis in the Aspergillus niger N25 phyA ~m gene at residue 44I and 252 T, and they were replaced by glutamic acid and arginine. Single-site mutants I44E-PhyA and T252R-PhyA, as well as double-site mutant I44E/T252R-PhyA, were constructed to improve the thermostability of PhyA through hydrogen bondings and ionic interactions. The three mutant enzymes all showed more than 20 % improvement in thermostability compared to the wild-type enzyme after being heated at 80 C for 10 min. Their melting temperatures (T _m) were increased by 1, 1, and 1.2 C, respectively. The k _m values of I44E-PhyA, T252R-PhyA, and I44E/T252R-PhyA for sodium phytate were 78, 44, and 79 % lower (P <0.05) than that of the wild-type enzyme. Overall catalytic efficiency (k _(cat)/k _m) of I44E-PhyA, T252R-PhyA, and I44E/T252R-PhyA was improved by 310, 155, and 84 % (P <0.05) than that of the wild type, respectively. The catalytic efficiency did not seem to be negatively affected by the improvement in thermostability.
机译:黑曲霉植酸酶(PhyA)已被用作饲料补充品,以提高植酸磷对猪和家禽的生物利用度。然而,由于饲料制粒过程中的高温,它不能维持其稳定性。在这项研究中,我们在黑曲霉N25 phyA〜m基因的第44I和252 T位残基上进行了定点诱变,并用谷氨酸和精氨酸替代了它们。构建单位点突变体I44E-PhyA和T252R-PhyA,以及双位点突变体I44E / T252R-PhyA,以通过氢键和离子相互作用提高PhyA的热稳定性。与野生型酶相比,在80°C加热10分钟后,这三种突变型酶的热稳定性均提高了20%以上。它们的熔融温度(T _m)分别提高了1、1和1.2C。 I44E-PhyA,T252R-PhyA和I44E / T252R-PhyA的肌醇六磷酸钠的k _m值分别比野生型酶低78、44和79%(P <0.05)。与野生型相比,I44E-PhyA,T252R-PhyA和I44E / T252R-PhyA的总催化效率(k_(cat)/ k_m)提高了310%,155%和84%(P <0.05),分别。催化效率似乎并未因热稳定性的提高而受到负面影响。

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