Godase Vijaya P, Kumar V Ravi, Kumar Ameeta Ravi
Biochemistry Research Laboratory, Department of Biotechnology (Formerly Institute of Bioinformatics and Biotechnology), Savitribai Phule Pune University, 411007, Pune, India.
Department of Biochemistry, Shivaji University, 416004, Kolhapur, India.
AMB Express. 2023 Jul 26;13(1):77. doi: 10.1186/s13568-023-01584-1.
The recombinant Yleh from a tropical marine yeast Yarrowia lipolytica NCIM 3589 exhibited a high epoxide hydrolase activity of 9.34 ± 1.80 µmol min mg protein towards 1,2-epoxyoctane (EO), at pH 8.0 and 30 °C. The reaction product was identified as 1,2-Octanediol (OD) by GC-MS using EO and HO as substrate, affirming the functionality of Yleh as an epoxide hydrolase. For EO, the K, V, and k/K values were 0.43 ± 0.017 mM, 0.042 ± 0.003 mM min, and 467.17 ± 39.43 mM min, respectively. To optimize the reaction conditions for conversion of racemic EO by Yleh catalyst to enantiopure (R)-1,2-octanediol, initially, Response Surface Methodology was employed. Under optimized reaction conditions of 15 mM EO, 150 µg purified Yleh at 30 °C a maximal diol production of 7.11 mM was attained in a short span of 65 min with a yield of 47.4%. Green technology using deep eutectic solvents for the hydrophobic substrate (EO) were tested as co-solvents in Yleh catalyzed EO hydrolysis. Choline chloride-Glycerol, produced 9.08 mM OD with an increased OD yield of 60.5%. Thus, results showed that deep eutectic solvents could be a promising solvent for Yleh-catalyzed reactions making Yleh a potential biocatalyst for the biosynthesis of enantiopure synthons.
来自热带海洋酵母解脂耶氏酵母NCIM 3589的重组Yleh在pH 8.0和30°C条件下,对1,2-环氧辛烷(EO)表现出9.34±1.80 μmol min mg蛋白的高环氧水解酶活性。以EO和HO为底物,通过GC-MS将反应产物鉴定为1,2-辛二醇(OD),证实了Yleh作为环氧水解酶的功能。对于EO,K、V和k/K值分别为0.43±0.017 mM、0.042±0.003 mM min和467.17±39.43 mM min。为了优化Yleh催化剂将外消旋EO转化为对映纯(R)-1,2-辛二醇的反应条件,首先采用了响应面法。在15 mM EO、150 μg纯化的Yleh、30°C的优化反应条件下,在短短65分钟内获得了7.11 mM的最大二醇产量,产率为47.4%。测试了使用低共熔溶剂作为疏水底物(EO)的绿色技术作为Yleh催化EO水解的共溶剂。氯化胆碱-甘油产生了9.08 mM的OD,OD产率提高了60.5%。因此,结果表明,低共熔溶剂可能是Yleh催化反应的一种有前景的溶剂,使Yleh成为对映纯合成子生物合成的潜在生物催化剂。