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首页> 外文期刊>Marine Drugs >Rational Design of Alginate Lyase from Microbulbifer sp. Q7 to Improve Thermal Stability
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Rational Design of Alginate Lyase from Microbulbifer sp. Q7 to Improve Thermal Stability

机译:微型鳞茎藻藻酸盐裂解酶的合理设计。 Q7提高热稳定性

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Alginate lyase degrades alginate by the β-elimination mechanism to produce oligosaccharides with special bioactivities. The low thermal stability of alginate lyase limits its industrial application. In this study, introducing the disulfide bonds while using the rational design methodology enhanced the thermal stability of alginate lyase cAlyM from Microbulbifer sp. Q7. Enzyme catalytic sites, secondary structure, spatial configuration, and molecular dynamic simulation were comprehensively analyzed. When compared with cAlyM, the mutants D102C-A300C and G103C-T113C showed an increase by 2.25 and 1.16 h, respectively, in half-life time at 45 °C, in addition to increases by 1.7 °C and 0.4 °C in the melting temperature, respectively. The enzyme-specific activity and k cat / K m values of D102C-A300C were 1.8- and 1.5-times higher than those of cAlyM, respectively. The rational design strategy that was used in this study provides a valuable method for improving the thermal stability of the alginate lyase.
机译:海藻酸盐裂解酶通过β-消除机制降解海藻酸盐,以产生具有特殊生物活性的寡糖。海藻酸盐裂解酶的低热稳定性限制了其工业应用。在这项研究中,引入二硫键,同时使用合理的设计方法,可以提高Microbulbifer sp。的藻酸盐裂解酶cAlyM的热稳定性。 Q7。全面分析了酶催化位点,二级结构,空间构型和分子动力学模拟。与cAlyM相比,突变体D102C-A300C和G103C-T113C在45°C的半衰期中分别增加了2.25和1.16 h,并且在融解中分别增加了1.7°C和0.4°C温度。 D102C-A300C的酶比活性和k cat / K m值分别比cAlyM高1.8倍和1.5倍。这项研究中使用的合理设计策略为提高藻酸盐裂解酶的热稳定性提供了一种有价值的方法。

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