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Laboratory evolution of Pyrococcus furiosus alcohol dehydrogenase to improve the production of (2S5S)-hexanediol at moderate temperatures

机译:激烈热球菌乙醇脱氢酶在中等温度下改善(2S5S)-己二醇生产的实验室演变

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摘要

There is considerable interest in the use of enantioselective alcohol dehydrogenases for the production of enantio- and diastereomerically pure diols, which are important building blocks for pharmaceuticals, agrochemicals and fine chemicals. Due to the need for a stable alcohol dehydrogenase with activity at low-temperature process conditions (30°C) for the production of (2S,5S)-hexanediol, we have improved an alcohol dehydrogenase from the hyperthermophilic archaeon Pyrococcus furiosus (AdhA). A stable S-selective alcohol dehydrogenase with increased activity at 30°C on the substrate 2,5-hexanedione was generated by laboratory evolution on the thermostable alcohol dehydrogenase AdhA. One round of error-prone PCR and screening of ∼1,500 mutants was performed. The maximum specific activity of the best performing mutant with 2,5-hexanedione at 30°C was tenfold higher compared to the activity of the wild-type enzyme. A 3D-model of AdhA revealed that this mutant has one mutation in the well-conserved NADP(H)-binding site (R11L), and a second mutation (A180V) near the catalytic and highly conserved threonine at position 183.
机译:使用对映选择性醇脱氢酶生产对映体和非对映体纯的二醇引起了相当大的兴趣,它们是医药,农药和精细化学品的重要组成部分。由于需要在生产(2S,5S)-己二醇的低温工艺条件下具有活性的稳定醇脱氢酶,因此我们改进了超嗜热古生火球菌(AdhA)的醇脱氢酶。通过对热稳定的醇脱氢酶AdhA的实验室进化,在30℃下在底物2,5-己二酮上具有增加的活性的稳定的S-选择性醇脱氢酶。进行了一轮容易出错的PCR,并筛选了约1,500个突变体。与野生型酶的活性相比,性能最佳的突变体在30°C时具有2,5-己二酮的最大比活性高十倍。 AdhA的3D模型显示,此突变体在高度保守的NADP(H)结合位点(R11L)中具有一个突变,而在催化和高度保守的苏氨酸附近的位置183附近具有第二个突变(A180V)。

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