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Enhanced Reactivity of Rhizopus oryzae Lipase Displayed on Yeast Cell Surfaces in Organic Solvents: Potential as a Whole-Cell Biocatalyst in Organic Solvents

机译:在有机溶剂中在酵母细胞表面上显示的米根霉脂肪酶的增强反应性:在有机溶剂中作为全细胞生物催化剂的潜力

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摘要

Immobilization of enzymes on some solid supports has been used to stabilize enzymes in organic solvents. In this study, we evaluated applications of genetically immobilized Rhizopus oryzae lipase displayed on the cell surface of Saccharomyces cerevisiae in organic solvents and measured the catalytic activity of the displayed enzyme as a fusion protein with α-agglutinin. Compared to the activity of a commercial preparation of this lipase, the activity of the new preparation was 4.4 × 104-fold higher in a hydrolysis reaction using p-nitrophenyl palmitate and 3.8 × 104-fold higher in an esterification reaction with palmitic acid and n-pentanol (0.2% H2O). Increased enzyme activity may occur because the lipase displayed on the yeast cell surface is stabilized by the cell wall. We used a combination of error-prone PCR and cell surface display to increase lipase activity. Of 7,000 colonies in a library of mutated lipases, 13 formed a clear halo on plates containing 0.2% methyl palmitate. In organic solvents, the catalytic activity of 5/13 mutants was three- to sixfold higher than that of the original construct. Thus, yeast cells displaying the lipase can be used in organic solvents, and the lipase activity may be increased by a combination of protein engineering and display techniques. Thus, this immobilized lipase, which is more easily prepared and has higher activity than commercially available free and immobilized lipases, may be a practical alternative for the production of esters derived from fatty acids.
机译:酶固定在某些固体支持物上已用于稳定有机溶剂中的酶。在这项研究中,我们评估了在有机溶剂中在啤酒酵母细胞表面上展示的遗传固定化米根霉脂肪酶的应用,并测量了展示的酶与α-凝集素融合蛋白的催化活性。与该脂肪酶的市售制剂的活性相比,在使用对硝基苯基棕榈酸酯和3.8×10 4的水解反应中,新制剂的活性高4.4×10 4 -倍。与棕榈酸和正戊醇(0.2%H2O)的酯化反应中的-高。由于酵母细胞表面显示的脂肪酶被细胞壁稳定,因此可能会增加酶的活性。我们使用了易于出错的PCR和细胞表面展示相结合的方法来增加脂肪酶的活性。在突变的脂肪酶文库中的7,000个菌落中,有13个在含有0.2%棕榈酸甲酯的平板上形成了清晰的光环。在有机溶剂中,5/13突变体的催化活性比原始构建体高三到六倍。因此,展示脂肪酶的酵母细胞可以用于有机溶剂,并且可以通过蛋白质工程和展示技术的结合来提高脂肪酶的活性。因此,这种固定化的脂肪酶比市售的游离和固定化的脂肪酶更容易制备并且具有更高的活性,可能是生产衍生自脂肪酸的酯的实际选择。

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