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Ion-Pair Interaction and Hydrogen Bonds as Main Features of Protein Thermostability in Mutated T1 Recombinant Lipase Originating from Geobacilluszalihae

机译:离子对相互作用和氢键作为蛋白质热稳定性在突变的T1重组脂肪酶中源自Geobacillus的主要特征Zalihae.

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摘要

A comparative structure analysis between space- and an Earth-grown T1 recombinant lipase from had shown changes in the formation of hydrogen bonds and ion-pair interactions. Using the space-grown T1 lipase validated structure having incorporated said interactions, the recombinant T1 lipase was re-engineered to determine the changes brought by these interactions to the structure and stability of lipase. To understand the effects of mutation on T1 recombinant lipase, five mutants were developed from the structure of space-grown T1 lipase and biochemically characterized. The results demonstrate an increase in melting temperature up to 77.4 °C and 76.0 °C in E226D and D43E, respectively. Moreover, the mutated lipases D43E and E226D had additional hydrogen bonds and ion-pair interactions in their structures due to the improvement of stability, as observed in a longer half-life and an increased melting temperature. The biophysical study revealed differences in β-Sheet percentage between less stable (T118N) and other mutants. As a conclusion, the comparative analysis of the tertiary structure and specific residues associated with ion-pair interactions and hydrogen bonds could be significant in revealing the thermostability of an enzyme with industrial importance.
机译:空间和地球生长T1重组脂肪酶之间的比较结构分析显示了氢键和离子对相互作用的形成变化。使用具有所述相互作用的空间生长的T1脂肪酶验证结构,重新设计重组T1脂肪酶以确定这些相互作用与脂肪酶的结构和稳定性带来的变化。为了了解突变对T1重组脂肪酶的影响,从空间生长的T1脂肪酶的结构和生物化学表征中产生五个突变体。结果表明,熔融温度升高至77.4°C和76.0°C分别在E226D和D43E中。此外,由于稳定​​性的提高,突变的脂肪酶D43E和E226D在其结构中具有额外的氢键和离子对相互作用,如在较长的半衰期和增加的熔化温度下所观察到。生物物理学研究揭示了β-片百分比在不太稳定(T118N)和其他突变体之间的差异。作为结论,与离子对相互作用和氢键相关的三级结构和特定残基的比较分析对于揭示酶具有工业重要性的酶的热稳定性可能是显着的。

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