Whittaker M M, Whittaker J W
Department of Biochemistry and Molecular Biology, Oregon Graduate Institute of Science and Technology, Portland, Oregon 97291, USA.
Protein Expr Purif. 2000 Oct;20(1):105-11. doi: 10.1006/prep.2000.1287.
Galactose oxidase catalyzes the oxidation of a variety of primary alcohols, producing hydrogen peroxide as a product. Among hexose sugars, the enzyme exhibits a high degree of specificity for the C6-hydroxyl of galactose and its derivatives, underlying a number of important bioanalytical applications. Galactose oxidase cDNA has been cloned for expression in Pichia pastoris both as the full-length native sequence and as a fusion with the glucoamylase signal peptide. Expression of the full-length native sequence results in a mixture of partly processed and mature galactose oxidase. In contrast, the fusion construct directs efficient secretion of correctly processed galactose oxidase in high-density, methanol-induced fermentation. Culture conditions (including induction temperature and pH) have been optimized to improve the quality and yield (500 mg/L) of recombinant enzyme. Lowering the temperature from 30 to 25 degrees C during the methanol induction phase results in a fourfold increase in yield. A simple two-step purification and one-step activation produce highly active galactose oxidase suitable for a wide range of biomedical and bioanalytical applications.
半乳糖氧化酶催化多种伯醇的氧化反应,生成过氧化氢作为产物。在己糖中,该酶对半乳糖及其衍生物的C6-羟基表现出高度特异性,这是许多重要生物分析应用的基础。半乳糖氧化酶cDNA已被克隆,可在巴斯德毕赤酵母中表达,表达形式既有全长天然序列,也有与葡糖淀粉酶信号肽的融合序列。全长天然序列的表达会产生部分加工和成熟的半乳糖氧化酶混合物。相比之下,融合构建体在高密度甲醇诱导发酵中能指导正确加工的半乳糖氧化酶高效分泌。培养条件(包括诱导温度和pH)已得到优化,以提高重组酶的质量和产量(500 mg/L)。在甲醇诱导阶段将温度从30℃降至25℃可使产量提高四倍。简单的两步纯化和一步激活可产生适用于广泛生物医学和生物分析应用的高活性半乳糖氧化酶。