Sub-Institute of Agriculture and Food Standardization, China National Institute of Standardization, Beijing, China.
Key Laboratory for Industrial Biocatalysis, Institute of Biochemical Engineering, Department of Chemical Engineering, Tsinghua University, Beijing, China.
Biotechnol Appl Biochem. 2022 Aug;69(4):1535-1544. doi: 10.1002/bab.2225. Epub 2021 Aug 7.
To tune the efficiency of oxidized cofactor recycling between alcohol dehydrogenase (ADH) and NADH oxidase (NOX) for the production of aromatic chiral alcohols, we designed and constructed four novel bifunctional fusion proteins composed of thermostable ADH and NOX from Thermococcus kodakarensis KOD1. ADH was linked to the N- or C-terminus of NOX with a typical rigid linker (EAAAK) and a flexible linker (GGGGS) , respectively. Compared with the parental enzymes, the NOX moieties in the four fusion proteins exhibited higher specific activities (141%-282%), while the ADH moieties exhibited varying levels of specific activity (69%-167%). All fusion proteins showed decreased affinities toward the cofactors, with increased K values toward NADH (159%-406%) and NAD (202%-372%). In the enantioselective oxidation of (RS)-1-phenylethanol coupled with cofactor regeneration, the four fusion proteins displayed different positive and negative effects on the recycling efficiency of the oxidized cofactor. The two fusion proteins composed of NOX at the N-terminus exhibited higher total turnover numbers than the corresponding mixtures of individual enzymes with equal activities, particularly at low cofactor concentrations. These findings suggest high cofactor recycling efficiencies of the fusion proteins with appropriate design and their potential application in the biosynthesis of chiral alcohols.
为了提高氧化辅因子在醇脱氢酶(ADH)和 NADH 氧化酶(NOX)之间的循环效率,以用于芳香族手性醇的生产,我们设计并构建了四个由来自 Thermococcus kodakarensis KOD1 的热稳定 ADH 和 NOX 组成的新型双功能融合蛋白。ADH 通过一个典型的刚性接头(EAAAK)和一个柔性接头(GGGGS)分别连接到 NOX 的 N-或 C-末端。与亲本酶相比,四个融合蛋白中的 NOX 部分表现出更高的比活性(141%-282%),而 ADH 部分表现出不同程度的比活性(69%-167%)。所有融合蛋白对辅酶的亲和力降低,对 NADH(159%-406%)和 NAD(202%-372%)的 K 值增加。在(RS)-1-苯乙醇的对映选择性氧化与辅酶再生偶联中,四个融合蛋白对氧化辅因子的循环效率表现出不同的正、负影响。由 NOX 位于 N 末端组成的两个融合蛋白表现出比相应的具有相等活性的单个酶混合物更高的总周转率数,特别是在低辅酶浓度下。这些发现表明,融合蛋白具有较高的辅酶循环效率,设计合理,可应用于手性醇的生物合成。