首页> 外文期刊>The Journal of biological chemistry >Purification, cloning, and heterologous expression of a catalytically efficient flavonol 3-O-galactosyltransferase expressed in the male gametophyte of Petunia hybrida.
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Purification, cloning, and heterologous expression of a catalytically efficient flavonol 3-O-galactosyltransferase expressed in the male gametophyte of Petunia hybrida.

机译:在矮牵牛杂交种的雄配子体中表达的催化高效黄酮醇 3-O-半乳糖基转移酶的纯化、克隆和异源表达。

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Flavonols are plant-specific molecules that are required for pollen germination in maize and petunia. They exist in planta as both the aglycone and glycosyl conjugates. We identified a flavonol 3-O-galactosyltransferase (F3GalTase) that is expressed exclusively in the male gametophyte and controls the formation of a pollen-specific class of glycosylated flavonols. Thus an essential step to understanding flavonol-induced germination is the characterization of F3GalTase. Amino acid sequences of three peptide fragments of F3GalTase purified from petunia pollen were used to isolate a full-length cDNA clone. RNA gel blot analysis and enzyme assays confirmed that F3GalTase expression is restricted to pollen. Heterologous expression of the F3GalTase cDNA in Escherichia coli yielded active recombinant enzyme (rF3GalTase) which had the identical substrate specificity as the native enzyme. Unlike the relatively nonspecific substrate usage of flavonoid glycosyltransferases from sporophytic tissues, F3GalTase uses only UDP-galactose and flavonols to catalyze the formation of flavonol 3-O-galactosides. Kinetic analysis showed that the k(cat)/K(m) values of rF3GalTase, using kaempferol and quercetin as substrates, approaches that of a catalytically perfect enzyme. rF3GalTase catalyzes the reverse reaction, generation of flavonols from UDP and flavonol 3-O-galactosides, almost as efficiently as the forward reaction. The biochemical characteristics of F3GalTase are discussed in the context of a role in flavonol-induced pollen germination.
机译:黄酮醇是玉米和矮牵牛花粉萌发所必需的植物特异性分子。它们以苷元和糖基结合物的形式存在于植物中。我们鉴定了一种黄酮醇 3-O-半乳糖基转移酶 (F3GalTase),该酶仅在雄性配子体中表达并控制花粉特异性糖基化黄酮醇的形成。因此,了解黄酮醇诱导的萌发的一个重要步骤是F3GalTase的表征。利用从矮牵牛花粉中纯化的F3GalTase的三个肽片段的氨基酸序列分离出一个全长cDNA克隆。RNA凝胶印迹分析和酶测定证实,F3GalTase的表达仅限于花粉。F3GalTase cDNA在大肠杆菌中的异源表达产生了活性重组酶(rF3GalTase),其底物特异性与天然酶相同。与来自孢子体组织的类黄酮糖基转移酶的相对非特异性底物使用不同,F3GalTase 仅使用 UDP-半乳糖和黄酮醇来催化黄酮醇 3-O-半乳糖苷的形成。动力学分析表明,使用山奈酚和槲皮素作为底物的rF3GalTase的k(cat)/K(m)值接近催化完美酶的k(cat)/K(m)值。rF3GalTase 催化逆反应,从 UDP 和黄酮醇 3-O-半乳糖苷生成黄酮醇,几乎与正向反应一样有效。F3GalTase的生化特性在黄酮醇诱导的花粉萌发中的作用中进行了讨论。

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