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Gene Cloning, Protein Characterization, and Alteration of Product Selectivity for the Trehalulose Hydrolase and Trehalulose Synthase from “Pseudomonas mesoacidophila” MX-45▿ †

机译:来自“嗜酸假单胞菌”MX-45▿的海藻糖水解酶和海藻糖合酶的基因克隆,蛋白质表征和产物选择性的改变

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摘要

The naturally occurring structural isomer of sucrose, trehalulose, is produced by sucrose isomerase (SI). Screening of chromosomal DNA from “Pseudomonas mesoacidophila” MX-45 with an SI-specific probe facilitated the cloning of two adjacent gene homologs, mutA and mutB. Both genes were expressed separately in Escherichia coli, and their enzyme products were characterized. MutA hydrolyzed the substrates trehalulose, isomaltulose, and sucrose into glucose and fructose. Due to its highest activity on trehalulose, MutA was referred to as trehalulase. mutB encodes the SI (trehalulose synthase) and catalyzes the isomerization of sucrose to mainly trehalulose. From Northern blot analysis it is apparent that the mutB gene is not transcribed as part of an operon and was transcriptionally upregulated when P. mesoacidophila MX-45 cells were grown in sucrose medium, whereas under investigated conditions no transcript for mutA was detected. Mutants of mutB were created by a random mutagenesis approach in order to alter the product specificity of MutB. Two types of mutants have emerged, one type that prefers the hydrolytic reaction on sucrose and another type that still acts as an SI but with a significant shift in the product from trehalulose to isomaltulose. The hydrolytic character of MutB R311C was demonstrated through its higher catalytic efficiency for glucose production over trehalulose production. MutB D442N favored the transfer reaction, with an isomer preference for isomaltulose.
机译:蔗糖异构酶(SI)产生了蔗糖的天然结构异构体海藻糖。用SI特异性探针从“嗜中性假单胞菌” MX-45中筛选染色体DNA有助于克隆两个相邻的基因同源物mutA和mutB。两种基因均在大肠杆菌中分别表达,并对其酶产物进行了表征。 MutA将底物海藻糖,异麦芽酮糖和蔗糖水解为葡萄糖和果糖。由于其对海藻糖的最高活性,因此MutA被称为海藻糖酶。 mutB编码SI(海藻糖合酶)并催化蔗糖异构化为主要的海藻糖。从Northern印迹分析中可以明显看出,当在嗜蔗糖培养基中培养嗜中性嗜酸杆菌MX-45细胞时,mutB基因不作为操纵子的一部分转录,并且在转录上调,而在所研究的条件下未检测到mutA的转录本。 mutB突变体通过随机诱变方法创建,以改变MutB的产物特异性。已经出现了两种类型的突变体,一种类型倾向于在蔗糖上进行水解反应,另一种类型仍然充当SI,但是产物从海藻糖到异麦芽酮糖的转变明显。 MutB R311C的水解特性通过其对葡萄糖生产的催化效率高于海藻糖生产得到证明。 MutB D442N支持转移反应,异构体优先选择异麦芽酮糖。

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