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Discovery of an Escherichia coli esterase with high activity and enantioselectivity toward 1,2-O-isopropylideneglycerol esters

机译:发现一种对1,2-O-异亚丙基甘油酯具有高活性和对映选择性的大肠杆菌酯酶

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摘要

Escherichia coli has been widely used as an expression host for the identification of desired biocatalysts through screening or selection assays. We have previously used E. coli in growth selection and screening assays for identification of Bacillus subtilis lipase variants (located in the periplasm) with improved activity and enantioselectivity toward 1,2-O-isopropylideneglycerol (IPG) esters. In the course of these studies, we discovered that E. coli itself exhibits significant cytoplasmic esterase activity toward IPG esters. In order to identify the enzyme (or enzymes) responsible for this esterase activity, we analyzed eight E. coli knockout strains, in which single esterase genes were deleted, for their ability to hydrolyze IPG butyrate. This approach led to the identification of esterase YbfF as the major E. coli enzyme responsible for the hydrolytic activity toward IPG esters. The gene coding for YbfF was cloned and overexpressed in E. coli, and the corresponding protein was purified and characterized for its biocatalytic performance. YbfF displays a high level of activity toward IPG butyrate and IPG caprylate and prefers the R-enantiomer of these substrates, producing the S-enantiomer of the IPG product with high enantiomeric excess (72 to 94 ee). The enantioselectivity of YbfF for IPG caprylate (E = 40) could be significantly enhanced when using dimethylformamide (DMF) or dimethyl sulfoxide (DMSO) as cosolvents in kinetic resolution experiments. The enzyme also shows high enantioselectivity toward 1-phenylethyl acetate (E ≥ 200), giving the chiral product (R)-1-phenylethanol with >99 ee. The high activity and enantioselectivity of YbfF make it an attractive enzyme for organic synthesis.
机译:大肠杆菌已被广泛用作表达宿主,用于通过筛选或选择测定来鉴定所需的生物催化剂。我们之前曾在生长选择和筛选试验中使用大肠杆菌来鉴定枯草芽孢杆菌脂肪酶变体(位于周质中),对 1,2-O-异亚丙基甘油 (IPG) 酯具有更高的活性和对映选择性。在这些研究过程中,我们发现大肠杆菌本身对IPG酯表现出显着的细胞质酯酶活性。为了鉴定负责这种酯酶活性的酶(或酶),我们分析了八种大肠杆菌敲除菌株,其中单个酯酶基因被删除,因为它们水解IPG丁酸盐的能力。这种方法导致将酯酶 YbfF 鉴定为负责对 IPG 酯水解活性的主要大肠杆菌酶。在大肠杆菌中克隆并过表达YbfF的基因,纯化并表征相应的蛋白质的生物催化性能。YbfF 对 IPG 丁酸盐和 IPG 辛酸酯表现出高水平的活性,并且更喜欢这些底物的 R-对映异构体,从而产生具有高对映体过量 (72% 至 94% ee) 的 IPG 产物的 S-对映异构体。在动力学分离实验中使用二甲基甲酰胺(DMF)或二甲基亚砜(DMSO)作为助溶剂时,YbfF对IPG辛酸酯(E = 40)的对映选择性可以显著增强。该酶还对 1-苯乙基乙酸酯 (E ≥ 200) 表现出高对映选择性,得到手性产物 (R)-1-苯乙醇,含 >99% ee。YbfF的高活性和对映选择性使其成为一种有吸引力的有机合成酶。

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