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UGT92G6 的结构与功能分析提示单糖和二糖糖苷形成转移酶之间存在进化联系。

Structural and Functional Analysis of UGT92G6 Suggests an Evolutionary Link Between Mono- and Disaccharide Glycoside-Forming Transferases.

机构信息

Biotechnology of Natural Products, Technische Universität München, Liesel-Beckmann-Str. 1, D-85354 Freising, Germany.

Plant Molecular Biology Unit, Division of Biochemical Sciences, CSIR-National Chemical Laboratory, Pune, MS 411 008, India.

出版信息

Plant Cell Physiol. 2018 Apr 1;59(4):857-870. doi: 10.1093/pcp/pcy028.

Abstract

Glycosylation mediated by UDP-dependent glycosyltransferase (UGT) is one of the most common reactions for the biosynthesis of small molecule glycosides. As glycosides have various biological roles, we characterized UGT genes from grapevine (Vitis vinifera). In silico analysis of VvUGT genes that were highly expressed in leaves identified UGT92G6 which showed sequence similarity to both monosaccharide and disaccharide glucoside-forming transferases. The recombinant UGT92G6 glucosylated phenolics, among them caffeic acid, carvacrol, eugenol and raspberry ketone, and also accepted geranyl glucoside and citronellyl glucoside. Thus, UGT92G6 formed mono- and diglucosides in vitro from distinct compounds. The enzyme specificity constant Vmax/Km ratios indicated that UGT92G6 exhibited the highest specificity towards caffeic acid, producing almost equal amounts of the 3- and 4-O-glucoside. Transient overexpression of UGT92G6 in Nicotiana benthamiana leaves confirmed the production of caffeoyl glucoside; however, the level of geranyl diglucoside was not elevated upon overexpression of UGT92G6, even after co-expression of genes encoding geraniol synthase and geraniol UGT to provide sufficient precursor. Comparative sequence and 3-D structure analysis identified a sequence motif characteristic for monoglucoside-forming UGTs in UGT92G6, suggesting an evolutionary link between mono- and disaccharide glycoside UGTs. Thus, UGT92G6 functions as a mono- and diglucosyltransferase in vitro, but acts as a caffeoyl glucoside UGT in N. benthamiana.

摘要

UDP 依赖性糖基转移酶(UGT)介导的糖基化是小分子糖苷生物合成中最常见的反应之一。由于糖苷具有多种生物学功能,我们从葡萄(Vitis vinifera)中鉴定了 UGT 基因。对在叶片中高度表达的 VvUGT 基因进行计算机分析,鉴定出 UGT92G6,其与单糖和二糖形成糖苷的转移酶具有序列相似性。重组 UGT92G6 可使酚类物质,包括咖啡酸、香芹酚、丁香酚和覆盆子酮,以及香叶基葡萄糖苷和香茅基葡萄糖苷发生葡萄糖基化。因此,UGT92G6 在体外可从不同化合物形成单糖苷和双糖苷。酶特异性常数 Vmax/Km 比值表明,UGT92G6 对咖啡酸表现出最高的特异性,产生的 3-O-和 4-O-葡萄糖苷几乎等量。UGT92G6 在烟草原生质体叶片中的瞬时过表达证实了咖啡酰葡萄糖苷的生成;然而,即使共表达香叶醇合酶和香叶醇 UGT 以提供足够的前体,UGT92G6 的过表达也不会提高香叶基二葡萄糖苷的水平。序列比较和 3-D 结构分析鉴定出 UGT92G6 中特征性的单糖苷形成 UGT 的序列基序,表明单糖苷和二糖苷 UGT 之间存在进化联系。因此,UGT92G6 在体外具有单糖苷和双糖苷转移酶的功能,但在 N. benthamiana 中作为咖啡酰葡萄糖苷 UGT 发挥作用。

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