Khalameyzer V, Fischer I, Bornscheuer U T, Altenbuchner J
Institute for Technical Biochemistry, University of Stuttgart, 70569 Stuttgart, Germany.
Appl Environ Microbiol. 1999 Feb;65(2):477-82. doi: 10.1128/AEM.65.2.477-482.1999.
A genomic library of Pseudomonas fluorescens DSM 50106 in a lambdaRESIII phage vector was screened in Escherichia coli K-12 for esterase activity by using alpha-naphthyl acetate and Fast Blue RR. A 3.2-kb DNA fragment was subcloned from an esterase-positive clone and completely sequenced. Esterase EstF1 was encoded by a 999-bp open reading frame (ORF) and exhibited significant amino acid sequence identity with members of the serine hydrolase family. The deduced amino acid sequences of two other C-terminal truncated ORFs exhibited homology to a cyclohexanone monooxygenase and an alkane hydroxylase. However, esterase activity was not induced by growing of P. fluorescens DSM 50106 in the presence of several cyclic ketones. The esterase gene was fused to a His tag and expressed in E. coli. The gene product was purified by zinc ion affinity chromatography and characterized. Detergents had to be added for purification, indicating that the enzyme was membrane bound or membrane associated. The optimum pH of the purified enzyme was 7.5, and the optimum temperature was 43 degreesC. The showed highest purified enzyme activities towards lactones. The activity increased from gamma-butyrolactone (18.1 U/mg) to epsilon-caprolactone (21.8 U/mg) to delta-valerolactone (36.5 U/mg). The activities towards the aliphatic esters were significantly lower; the only exception was the activity toward ethyl caprylate, which was the preferred substrate.
利用α-萘乙酸和固蓝RR在大肠杆菌K-12中筛选了荧光假单胞菌DSM 50106在λRESIII噬菌体载体中的基因组文库的酯酶活性。从一个酯酶阳性克隆中亚克隆出一个3.2 kb的DNA片段并进行了全序列测定。酯酶EstF1由一个999 bp的开放阅读框(ORF)编码,与丝氨酸水解酶家族成员具有显著的氨基酸序列同一性。另外两个C端截短的ORF的推导氨基酸序列与环己酮单加氧酶和烷烃羟化酶具有同源性。然而,在几种环酮存在的情况下培养荧光假单胞菌DSM 50106并不能诱导酯酶活性。酯酶基因与His标签融合并在大肠杆菌中表达。基因产物通过锌离子亲和层析进行纯化并进行了表征。纯化时必须添加去污剂,这表明该酶是膜结合的或与膜相关的。纯化酶的最适pH为7.5,最适温度为43℃。该纯化酶对内酯表现出最高活性。活性从γ-丁内酯(18.1 U/mg)增加到ε-己内酯(21.8 U/mg)再到δ-戊内酯(36.5 U/mg)。对脂肪族酯的活性显著较低;唯一的例外是对辛酸乙酯的活性,它是首选底物。