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Heterologous overexpression, purification and characterisation of an alcohol dehydrogenase (ADH2) from halobacterium sp. NRC-1

机译:嗜盐杆菌种的乙醇脱氢酶(ADH2)的异源过表达,纯化和表征。 NRC-1

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Replacement of chemical steps with biocatalytic ones is becoming increasingly more interesting due to the remarkable catalytic properties of enzymes, such as their wide range of substrate specificities and variety of chemo-, stereo- and regioselective reactions. This study presents characterisation of an alcohol dehydrogenase (ADH) from the halophilic archaeum Halobacterium sp. NRC-1 (HsADH2). A hexahistidine-tagged recombinant version of HsADH2 (His-HsADH2) was heterologously overexpressed in Haloferax volcanii. The enzyme was purified in one step by immobilised Ni-affinity chromatography. His-HsADH2 was halophilic and mildly thermophilic with optimal activity for ethanol oxidation at 4 M KCl around 60 C and pH 10.0. The enzyme was extremely stable, retaining 80 % activity after 30 days. His-HsADH2 showed preference for NADP(H) but interestingly retained 60 % activity towards NADH. The enzyme displayed broad substrate specificity, with maximum activity obtained for 1-propanol. The enzyme also accepted secondary alcohols such as 2-butanol and even 1-phenylethanol. In the reductive reaction, working conditions for His-HsADH2 were optimised for acetaldehyde and found to be 4 M KCl and pH 6.0. His-HsADH2 displayed intrinsic organic solvent tolerance, which is highly relevant for biotechnological applications.
机译:由于酶的显着催化特性,例如广泛的底物特异性以及各种化学,立体和区域选择性反应,用生物催化方法代替化学步骤变得越来越有趣。这项研究提出了嗜盐古细菌Halobacterium sp。的乙醇脱氢酶(ADH)的表征。 NRC-1(HsADH2)。六组氨酸标记的HsADH2(His-HsADH2)重组版本在Haloferax volcanii中异源过表达。该酶通过固定化的镍亲和层析一步纯化。 His-HsADH2具有嗜盐性和适度嗜热性,在4 M KCl于60 C和pH 10.0左右具有最佳的乙醇氧化活性。该酶非常稳定,在30天后仍保持80%的活性。 His-HsADH2显示出对NADP(H)的偏爱,但有趣的是保留了60%的NADH活性。该酶显示出广泛的底物特异性,对1-丙醇具有最大的活性。该酶还接受仲醇,例如2-丁醇,甚至1-苯基乙醇。在还原反应中,针对乙醛对His-HsADH2的工作条件进行了优化,结果为4 M KCl和pH 6.0。 His-HsADH2显示出固有的有机溶剂耐受性,这与生物技术应用高度相关。

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