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Approaching boiling point stability of an alcohol dehydrogenase through computationally-guided enzyme engineering

机译:通过计算指导的酶工程接近醇脱氢酶的沸点稳定性

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摘要

Enzyme instability is an important limitation for the investigation and application of enzymes. Therefore, methods to rapidly and effectively improve enzyme stability are highly appealing. In this study we applied a computational method (FRESCO) to guide the engineering of an alcohol dehydrogenase. Of the 177 selected mutations, 25 mutations brought about a significant increase in apparent melting temperature (Δ ≥ +3 °C). By combining mutations, a 10-fold mutant was generated with a of 94 °C (+51 °C relative to wild type), almost reaching water’s boiling point, and the highest increase with FRESCO to date. The 10-fold mutant’s structure was elucidated, which enabled the identification of an activity-impairing mutation. After reverting this mutation, the enzyme showed no loss in activity compared to wild type, while displaying a of 88 °C (+45 °C relative to wild type). This work demonstrates the value of enzyme stabilization through computational library design.
机译:酶的不稳定性是酶研究和应用的重要限制。因此,快速有效地提高酶稳定性的方法非常有吸引力。在这项研究中,我们应用了一种计算方法(FRESCO)来指导酒精脱氢酶的工程设计。在177个选定的突变中,有25个突变使表观熔解温度(Δ≥+3°C)显着增加。通过结合突变,产生了10倍突变体,其温度为94°C(相对于野生型为+51°C),几乎达到水的沸点,并且是FRESCO迄今为止最高的。阐明了10倍突变体的结构,从而可以鉴定出损害活性的突变。还原此突变后,该酶与野生型相比未显示出活性丧失,而酶切显示为88°C(相对于野生型+45°C)。这项工作通过计算库设计证明了酶稳定的价值。

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