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首页> 外文期刊>Protein engineering design & selection: PEDS >Improving activity and stability of cutinase towards the anionic detergent AOT by complete saturation mutagenesis.
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Improving activity and stability of cutinase towards the anionic detergent AOT by complete saturation mutagenesis.

机译:通过完全饱和诱变提高角质酶对阴离子洗涤剂AOT的活性和稳定性。

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摘要

Cutinase is an enzyme suitable for detergent applications as well as for organic synthesis in non-aqueous solvents. However, its inactivation in the presence of anionic surfactants is a problem which we have addressed by creating a complete saturation library. For this, the cutinase gene from Fusarium solani pisi was mutated to incorporate all 19 possible amino acid exchanges at each of the 214 amino acid positions. The resulting library was screened for active variants with improved stability in the presence of the anionic surfactant dioctyl sulfosuccinate sodium salt (AOT). Twenty-four sites in cutinase were discovered where amino acid replacements resulted in a 2-11-fold stability increase as compared to the wild-type enzyme.
机译:角质酶是适用于洗涤剂应用以及适用于非水溶剂中有机合成的酶。然而,在阴离子表面活性剂存在下其失活是我们已经通过创建完整的饱和文库解决的问题。为此,将茄枯萎病菌的角质酶基因突变,使其在214个氨基酸位置中的每一个都包含所有19个可能的氨基酸交换。在阴离子表面活性剂磺基琥珀酸二辛酯钠盐(AOT)的存在下,筛选得到的文库以寻找具有改进的稳定性的活性变体。在角质酶中发现了24个位点,与野生型酶相比,其中的氨基酸置换导致2-11倍的稳定性增加。

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