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首页> 外文期刊>Biotechnology and Bioengineering >Improvement of the acid resistance, catalytic efficiency, and thermostability of nattokinase by multisite-directed mutagenesis
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Improvement of the acid resistance, catalytic efficiency, and thermostability of nattokinase by multisite-directed mutagenesis

机译:通过偏心诱变改善Nattokinase的耐酸性,催化效率和热稳定性

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摘要

Nattokinase (NK) is a serine protease of the subtilisin family; asa potent fibrinolytic enzyme, it is potentially useful for thrombosis therapy. For NK to be applied as an oral medicine for the treatment of cardiovascular diseases, it must overcome the extremely acidic environments of the gastrointestinal tract despite its limited acidic stability. In this study, three strategies were adopted to improve the acid resistance of NK: (a) Surface charge engineering, (b) sequence alignment, and (c) mutation based on the literature. Eleven variants were constructed and four single-point mutations were screened out for their distinctive catalytic properties: Q59E increased the specific activity; S78T improved the acid stability; Y217K enhanced the acid and thermal stabilities; and N218D improved the thermostability. Based on these observations, multipoint variants were constructed and characterized, and one variant with better acid stability, catalytic efficiency, and thermostability was obtained. Molecular dynamics simulation was carried out to clarify the molecular mechanism of the increased stability of S78T and Y217K mutants under acidic conditions. This study explored effective strategies to engineer acid resistance of NK; moreover, the NK variants with better catalytic properties found in this study have potential applications for the medical industry.
机译:Nattokinase(NK)是枯草杆菌素家族的丝氨酸蛋白酶; ASA有效纤维蛋白溶解酶,它可能对血栓形成治疗有用。对于NK作为口腔药物用于治疗心血管疾病,尽管其酸性稳定性有限,但它必须克服胃肠道的极其酸性环境。在这项研究中,采用了三种策略来改善NK的耐酸性:(a)表面电荷工程,(b)序列对准,(c)突变基于文献。构建了11个变体,筛选出四个单点突变,用于其独特的催化性质:Q59E增加了比活性; S78T改善了酸稳定性; Y217K增强了酸和热稳定性; N218D改善了热稳定性。基于这些观察结果,构建和表征多点变体,得到一种具有更好酸稳定性,催化效率和热稳定性的一个变体。进行分子动力学模拟,以阐明酸性条件下S78T和Y217K突变体稳定性增加的分子机制。本研究探讨了NK的工程师耐酸性的有效策略;此外,本研究中发现具有更好催化性质的NK变体具有医学行业的潜在应用。

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