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Glycosylation of Phenolic Compounds by the Site-Mutated β-Galactosidase from Lactobacillus bulgaricus L3

机译:保加利亚乳杆菌L3定点突变的β-半乳糖苷酶对酚类化合物的糖基化作用

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摘要

β-Galactosidases can transfer the galactosyl from lactose or galactoside donors to various acceptors and thus are especially useful for the synthesis of important glycosides. However, these enzymes have limitations in the glycosylation of phenolic compounds that have many physiological functions. In this work, the β-galactosidase from Lactobacillus bulgaricus L3 was subjected to site-saturation mutagenesis at the W980 residue. The recombinant pET-21b plasmid carrying the enzyme gene was used as the template for mutation. The mutant plasmids were transformed into Escherichia coli cells for screening. One recombinant mutant, W980F, exhibited increased yield of glycoside when using hydroquinone as the screening acceptor. The enzyme was purified and the effects of the mutation on enzyme properties were determined in detail. It showed improved transglycosylation activity on novel phenolic acceptors besides hydroquinone. The yields of the glycosides produced from phenol, hydroquinone, and catechol were increased by 7.6% to 53.1%. Moreover, it generated 32.3% glycosides from the pyrogallol that could not be glycosylated by the wild-type enzyme. Chemical structures of these glycoside products were further determined by MS and NMR analysis. Thus, a series of novel phenolic galactosides were achieved by β-galactosidase for the first time. This was a breakthrough in the enzymatic galactosylation of the challenging phenolic compounds of great values.
机译:β-半乳糖苷酶可将半乳糖基从乳糖或半乳糖苷供体转移至各种受体,因此对于合成重要的糖苷特别有用。但是,这些酶在具有许多生理功能的酚类化合物的糖基化中具有局限性。在这项工作中,来自保加利亚乳杆菌L3的β-半乳糖苷酶在W980残基处进行了位点饱和诱变。带有酶基因的重组pET-21b质粒被用作突变的模板。突变质粒被转化到大肠杆菌细胞中进行筛选。当使用对苯二酚作为筛选受体时,一种重组突变体W980F的糖苷产量提高。纯化了酶,并详细测定了突变对酶特性的影响。除对苯二酚外,它还对新型酚类受体表现出改善的转糖基活性。由苯酚,对苯二酚和邻苯二酚生产的糖苷的收率提高了7.6%至53.1%。此外,它从邻苯三酚产生了32.3%的糖苷,这些糖苷无法被野生型酶糖基化。这些糖苷产物的化学结构通过MS和NMR分析进一步确定。因此,首次通过β-半乳糖苷酶获得了一系列新型的酚半乳糖苷。这是具有挑战性的高价值酚类化合物的酶促半乳糖基化的突破。

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