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分离、纯化和鉴定参与紫芹(Apium graveolens L.)花色苷半乳糖基化的半乳糖基转移酶 AgUCGalT1。

Isolation, purification, and characterization of AgUCGalT1, a galactosyltransferase involved in anthocyanin galactosylation in purple celery (Apium graveolens L.).

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Planta. 2018 Jun;247(6):1363-1375. doi: 10.1007/s00425-018-2870-5. Epub 2018 Mar 8.

Abstract

This study showed that a galactosyltransferase, AgUCGalT1, is involved in anthocyanin galactosylation in purple celery. Celery is a well-known vegetable because of its rich nutrients, low calories, and medicinal values. Its petioles and leaf blades are the main organs acting as nutrient sources. UDP-galactose: cyanidin 3-O-galactosyltransferase can transfer the galactosyl moiety from UDP-galactose to the 3-O-position of cyanidin through glycosylation. This process enhances the stability and water solubility of anthocyanins. In the present study, LC-MS data indicated that abundant cyanidin-based anthocyanins accumulated in the petioles of purple celery ('Nanxuan liuhe purple celery'). A gene encoding UDP-galactose: cyanidin 3-O-galactosyltransferase, namely AgUCGalT1, was isolated from purple celery and expressed in Escherichia coli BL21 (DE3). Sequence alignments revealed that the AgUCGalT1 protein contained a highly conserved putative secondary plant glycosyltransferase (PSPG) motif. The glycosylation product catalyzed by AgUCGalT1 was detected using UPLC equipment. The recombinant AgUCGalT1 had an optimal enzyme activity at 35 °C and pH 8.0, and showed highest enzyme activity toward cyanidin among the enzyme activities involving other substances, namely, peonidin, quercetin, and kaempferol. The expression levels of AgUCGalT1 were positively correlated with the total anthocyanin contents in purple and non-purple celery varieties. Crude enzymes extracted from purple celery exhibited glycosylation ability, whereas crude enzymes obtained from non-purple celery did not have this ability. This work provided evidence as a basis for investigations on the function of AgUCGalT1 in anthocyanin glycosylation in purple celery.

摘要

本研究表明,半乳糖基转移酶 AgUCGalT1 参与了紫色芹菜中花色苷的半乳糖基化。芹菜是一种营养丰富、热量低、药用价值高的著名蔬菜。其叶柄和叶片是作为营养源的主要器官。UDP-半乳糖:矢车菊素 3-O-半乳糖基转移酶可以通过糖基化将半乳糖基部分从 UDP-半乳糖转移到矢车菊素的 3-O-位。这个过程增强了花色苷的稳定性和水溶性。在本研究中,LC-MS 数据表明,丰富的以矢车菊素为基础的花色苷在紫色芹菜(“南玄柳河紫芹”)的叶柄中积累。从紫色芹菜中分离出编码 UDP-半乳糖:矢车菊素 3-O-半乳糖基转移酶的基因,即 AgUCGalT1,并在大肠杆菌 BL21 (DE3) 中表达。序列比对表明,AgUCGalT1 蛋白含有一个高度保守的假定植物次生糖苷基转移酶(PSPG)基序。使用 UPLC 设备检测 AgUCGalT1 催化的糖基化产物。重组 AgUCGalT1 在 35°C 和 pH8.0 时具有最佳酶活性,并且在涉及其他物质(即芍药素、槲皮素和山奈酚)的酶活性中对矢车菊素的酶活性最高。AgUCGalT1 的表达水平与紫色和非紫色芹菜品种中总花色苷含量呈正相关。从紫色芹菜中提取的粗酶具有糖基化能力,而从非紫色芹菜中提取的粗酶则没有这种能力。这项工作为研究 AgUCGalT1 在紫色芹菜花色苷糖基化中的功能提供了证据。

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