首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Fusion of an Oligopeptide to the N Terminus of an Alkaline α-Amylase from Alkalimonas amylolytica Simultaneously Improves the Enzymes Catalytic Efficiency Thermal Stability and Resistance to Oxidation
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Fusion of an Oligopeptide to the N Terminus of an Alkaline α-Amylase from Alkalimonas amylolytica Simultaneously Improves the Enzymes Catalytic Efficiency Thermal Stability and Resistance to Oxidation

机译:寡肽融合到解淀粉碱单胞菌的碱性α-淀粉酶的N末端上同时提高了酶的催化效率热稳定性和抗氧化性

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摘要

In this study, we constructed and expressed six fusion proteins composed of oligopeptides attached to the N terminus of the alkaline α-amylase (AmyK) from Alkalimonas amylolytica. The oligopeptides had various effects on the functional and structural characteristics of AmyK. AmyK-p1, the fusion protein containing peptide 1 (AEAEAKAKAEAEAKAK), exhibited improved specific activity, catalytic efficiency, alkaline stability, thermal stability, and oxidative stability compared with AmyK. Compared with AmyK, the specific activity and catalytic constant (kcat) of AmyK-p1 were increased by 4.1-fold and 3.5-fold, respectively. The following properties were also improved in AmyK-p1 compared with AmyK: kcat/Km increased from 1.8 liter/(g·min) to 9.7 liter/(g·min), stable pH range was extended from 7.0 to 11.0 to 7.0 to 12.0, optimal temperature increased from 50°C to 55°C, and the half-life at 60°C increased by ∼2-fold. Moreover, AmyK-p1 showed improved resistance to oxidation and retained 54% of its activity after incubation with H2O2, compared with 20% activity retained by AmyK. Finally, AmyK-p1 was more compatible than AmyK with the commercial solid detergents tested. The mechanisms responsible for these changes were analyzed by comparing the three-dimensional (3-D) structural models of AmyK and AmyK-p1. The significantly enhanced catalytic efficiency and stability of AmyK-p1 suggests its potential as a detergent ingredient. In addition, the oligopeptide fusion strategy described here may be useful for improving the catalytic efficiency and stability of other industrial enzymes.
机译:在这项研究中,我们构建并表达了6种由寡肽组成的融合蛋白,这些寡肽附着于解淀粉碱性碱菌(Alkalimonas amylolytica)的碱性α-淀粉酶(AmyK)N末端。寡肽对AmyK的功能和结构特征具有多种影响。与AmyK相比,含有肽1的融合蛋白AmyK-p1(AEAEAKAKAEAEAKAK)具有更高的比活性,催化效率,碱稳定性,热稳定性和氧化稳定性。与AmyK相比,AmyK-p1的比活性和催化常数(kcat)分别增加了4.1倍和3.5倍。与AmyK相比,AmyK-p1的以下特性也得到了改善:kcat / Km从1.8升/(g·min)增加到9.7升/(g·min),稳定的pH范围从7.0扩展到11.0到7.0到12.0 ,最佳温度从50°C增加到55°C,在60°C的半衰期增加了约2倍。此外,与H2O2孵育后,AmyK-p1显示出更高的抗氧化性,并保留了其54%的活性,而AmyK保留了20%的活性。最后,AmyK-p1与AmyK在测试的商业固体洗涤剂中的相容性更高。通过比较AmyK和AmyK-p1的三维(3-D)结构模型,分析了造成这些变化的机制。 AmyK-p1的催化效率和稳定性显着提高,表明其具有作为洗涤剂成分的潜力。另外,此处描述的寡肽融合策略可能对提高其他工业酶的催化效率和稳定性很有用。

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