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首页> 外文期刊>Biotechnology Progress >Directed Evolution of an Endoinulinase from Talaromyces Purpureogenus Toward Efficient Production of Inulooligosaccharides
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Directed Evolution of an Endoinulinase from Talaromyces Purpureogenus Toward Efficient Production of Inulooligosaccharides

机译:从塔罗米菌毒素到高效生产inuulooligosachares的引导素酶的定向演变

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摘要

Inulinases are fructofuranosyl hydrolases that target the beta-2,1 linkage of inulin and hydrolyze it into fructose, glucose and inulooligosaccharides (IOS), the latter are of growing interest as dietary fibers. Inulinases from various microorganisms have been purified, characterized and produced for industrial applications. However, there remains a need for inulinases with increased catalytic activity and better production yields to improve the hydrolysis process and fulfill the growing industrial demands for specific fibers. In this study, we used directed enzyme evolution to increase the yield and activity of an endoinulinase enzyme originated from the filamentous fungus Talaromyces purpureogenus (Penicillium purpureogenum ATCC4713). Our directed evolution approach yielded variants showing up to fivefold improvements in soluble enzyme production compared to the starting point which enabled high-yield production of highly purified recombinant enzyme. The distribution of the enzymatic reaction products demonstrated that after 24 h of incubation, the main product (57%) had a degree of polymerization of 3 (DP3). To the best of our knowledge, this is the first application of directed enzyme evolution to improve inulooligosaccharide production. The approach enabled the screening of large genetic libraries within short time frames and facilitated screening for improved enzymatic activities and properties, such as substrate specificity, product range, thermostability and pH optimum. (C) 2018 American Institute of Chemical Engineers
机译:酰硫酶是植物呋喃糖苷的水解酶,其靶向菊粉的β-2,1连杆,并将其水解成果糖,葡萄糖和硫酸核苷酸(IOS),后者对膳食纤维产生兴趣。已经纯化了来自各种微生物的酰硫酸氢酶,其特征和生产用于工业应用。然而,仍然需要含有含硫酸氢酶的催化活性和更好的产量,以改善水解过程并满足对特定纤维的不断增长的工业需求。在这项研究中,我们使用指向酶进化来提高源自丝状真菌缩略口紫癜的内切胰酶酶的产量和活性(青霉属Purpureogenum ATCC4713)。我们的定向演化方法产生了与启动点相比,可溶于酶生产的5fold改善的变体,其使高产高产重组酶的高产产生。酶促反应产物的分布证明,在孵育24小时后,主要产物(57%)具有3(DP3)的聚合度。据我们所知,这是第一次应用定向酶进化以改善inuuligosaccharide生产。该方法使筛选短时间内的大型遗传文库,并促进筛选,以改善酶活性和性质,例如底物特异性,产品范围,热稳定性和pH值。 (c)2018美国化学工程研究所

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