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Expression and Characterization of an Alginate Lyase and Its Thermostable Mutant in Pichia pastoris

机译:藻毕赤酵母及其热稳定突变体在毕赤酵母中的表达和鉴定

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摘要

Alginate is one of the most abundant polysaccharides in algae. Alginate lyase degrades alginate through a β-elimination mechanism to produce alginate oligosaccharides with special bioactivities. Improving enzyme activity and thermal stability can promote the application of alginate lyase in the industrial preparation of alginate oligosaccharides. In this study, the recombinant alginate lyase cAlyM and its thermostable mutant 102C300C were expressed and characterized in . The specific activities of cAlyM and 102C300C were 277.1 U/mg and 249.6 U/mg, respectively. Both enzymes showed maximal activity at 50 °C and pH 8.0 and polyG preference. The half-life values of 102C300C at 45 °C and 50 °C were 2.6 times and 11.7 times the values of cAlyM, respectively. The degradation products of 102C300C with a lower degree of polymerization contained more guluronate. The oligosaccharides with a polymerization degree of 2–4 were the final hydrolytic products. Therefore, 102C300C is potentially valuable in the production of alginate oligosaccharides with specific M/G ratio and molecular weights.
机译:海藻酸盐是藻类中含量最丰富的多糖之一。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海藻酸盐寡糖。提高酶活性和热稳定性可以促进藻酸盐裂解酶在藻酸盐寡糖的工业制备中的应用。在这项研究中,重组海藻酸盐裂解酶cAlyM及其热稳定突变体102C300C的表达和鉴定在。 cAlyM和102C300C的比活分别为277.1 U / mg和249.6 U / mg。两种酶在50°C和pH 8.0时均显示出最大活性,并且对polyG偏爱。 102C300C在45°C和50°C下的半衰期值分别是cAlyM值的2.6倍和11.7倍。具有较低聚合度的102C300C的降解产物含有更多的古洛糖醛酸酯。聚合度为2-4的寡糖是最终的水解产物。因此,102C300C在生产具有特定M / G比和分子量的藻酸盐寡糖方面具有潜在的价值。

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