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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Directed Evolution of a Formate Dehydrogenase for Increased Tolerance to Ionic Liquids Reveals a New Site for Increasing the Stability
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Directed Evolution of a Formate Dehydrogenase for Increased Tolerance to Ionic Liquids Reveals a New Site for Increasing the Stability

机译:定向脱氢酶的定向进化以增加对离子液体的耐受性揭示了增加稳定性的新场所

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The formate dehydrogenase (FDH) from Candida boidinii is a well-known enzyme in biocatalysis for NADH regeneration. Nevertheless, it has low activity in a water-miscible ionic liquid (1,3-dimethylimidazolium dimethyl phosphate, [MMIm]-[Me2PO4]). In this work, this enzyme was subjected to directed evolution by using error-prone PCR, and a mutant (N187S/T321S) displaying higher activity was obtained following selection based on the formazan-based colorimetric assay. The mutation N187S is responsible for improved activity both in aqueous solution and in [MMIm][Me2PO4], through an enhancement of the k(cat) value by a factor of 5.8. Fluorescence experiments performed in the presence of a quenching agent revealed that the mutant does not unfold in the presence of 50% (v/v) [MMIm][Me2PO4] whereas the wild-type enzyme does. Molecular modelling revealed that the mutation is located at the monomer-monomer interface and causes an increase in the pK(a) of residue E163 from 4.8 to 5.5. Calculation of the pK(a) of this residue in other microbial FDHs showed that thermostable FDHs have a highly basic glutamate at this position (pK(a) up to 6.2). We have identified a new site for improving FDH thermostability and tolerance to ionic liquids, and it is linked to the local charge of the enzymes in this class.
机译:来自博伊丁氏假丝酵母的甲酸脱氢酶(FDH)是生物催化NADH再生的著名酶。但是,它在与水混溶的离子液体(1,3-二甲基咪唑鎓磷酸二甲酯,[MMIm]-[Me2PO4])中具有较低的活性。在这项工作中,通过使用易错PCR对这种酶进行定向进化,并基于基于甲maz的比色测定进行选择后,获得了显示更高活性的突变体(N187S / T321S)。通过将k(cat)值提高5.8倍,突变N187S可以提高水溶液和[MMIm] [Me2PO4]的活性。在淬灭剂存在下进行的荧光实验表明,突变体在50%(v / v)[MMIm] [Me2PO4]存在下不会解折叠,而野生型酶却在。分子模型揭示该突变位于单体-单体界面,并导致残基E163的pK(a)从4.8增加到5.5。计算其他微生物FDH中该残基的pK(a)表明,热稳定的FDH在该位置具有高度碱性的谷氨酸盐(pK(a)最高为6.2)。我们已经确定了一个新的位点,用于提高FDH的热稳定性和对离子液体的耐受性,并且它与此类酶的局部电荷有关。

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