Maruyama Tatsuo, Yamamura Hiroshi, Kotani Takahiro, Kamiya Noriho, Goto Masahiro
Department of Applied Chemistry, Graduate School of Engineering, Kyushu University and PRESTO, JST, 6-10-1 Hakozaki, Fukuoka 812-8581, Japan.
Org Biomol Chem. 2004 Apr 21;2(8):1239-44. doi: 10.1039/b401012d. Epub 2004 Mar 22.
Lipase-catalyzed alcoholysis between vinyl acetate and 2-phenyl-1-propanol was investigated in dialkylimidazolium-based ionic liquids. Although native lipase powder exhibited very low activity in an ionic liquid, forming a poly(ethylene glycol)(PEG)-lipase complex improved the lipase activity in the ionic liquid. The activity of the PEG-lipase complex was higher in ionic liquids than in common organic solvents (n-hexane, isooctane and dimethylsulfoxide). Fluorescence measurements using 4-aminophthalimide revealed that the ionic liquids were more hydrophilic than the organic solvents used for non-aqueous enzymology. A kinetic study of lipase-catalyzed alcoholysis in an ionic liquid ([Bmim][PF6]) revealed that the Michaelis constant (Km) for 2-phenyl-1-propanol in the ionic liquid was half that in n-hexane, suggesting that the ionic liquid stabilized the enzyme-substrate complex. Finally, we carried out enantioselective alcoholysis of 1-phenylethanol in ionic liquids employing the PEG-lipase complex, and obtained high enantioselectivity, comparable to that in n-hexane.
研究了在基于二烷基咪唑鎓的离子液体中脂肪酶催化乙酸乙烯酯与2-苯基-1-丙醇之间的醇解反应。尽管天然脂肪酶粉末在离子液体中表现出非常低的活性,但形成聚乙二醇(PEG)-脂肪酶复合物可提高脂肪酶在离子液体中的活性。PEG-脂肪酶复合物在离子液体中的活性高于在常见有机溶剂(正己烷、异辛烷和二甲基亚砜)中的活性。使用4-氨基邻苯二甲酰亚胺进行的荧光测量表明,离子液体比用于非水酶学的有机溶剂更具亲水性。对离子液体([Bmim][PF6])中脂肪酶催化醇解反应的动力学研究表明,离子液体中2-苯基-1-丙醇的米氏常数(Km)是正己烷中的一半,这表明离子液体稳定了酶-底物复合物。最后,我们使用PEG-脂肪酶复合物在离子液体中进行了1-苯乙醇的对映选择性醇解反应,并获得了与正己烷中相当的高对映选择性。