KEY MESSAGE:The present study first identified the involvement of OcUAXS2 and OcUXS1-3 in anticancer polysaccharides biosynthesis in O. caudatum. UDP-xylose synthase (UXS) and UDP-D-apiose/UDP-D-xylose synthase (UAXS), both capable of converting UDP-D-glucuronic acid to UDP-D-xylose, are believed to transfer xylosyl residue to anticancer polysaccharides biosynthesis in Ornithogalum caudatum Ait. However, the cDNA isolation and functional characterization of genes encoding the two enzymes from O. caudatum has never been documented. Previously, the transcriptome sequencing of O. caudatum was performed in our laboratory. In this study, a total of six and two unigenes encoding UXS and UAXS were first retrieved based on RNA-Seq data. The eight putative genes were then successfully isolated from transcriptome of O. caudatum by reverse transcription polymerase chain reaction (RT-PCR). Phylogenetic analysis revealed the six putative UXS isoforms can be classified into three types, one soluble and two distinct putative membrane-bound. Moreover, the two UAXS isoenzymes were predicted to be soluble forms. Subsequently, these candidate cDNAs were characterized to be bona fide genes by functional expression in Escherichia coli individually. Although UXS and UAXS catalyzed the same reaction, their biochemical properties varied significantly. It is worth noting that a ratio switch of UDP-D-xylose/UDP-D-apiose for UAXS was established, which is assumed to be helpful for its biotechnological application. Furthermore, a series of mutants were generated to test the function of NAD+ binding motif GxxGxxG. Most importantly, the present study determined the involvement of OcUAXS2 and OcUXS1-3 in xylose-containing polysaccharides biosynthesis in O. caudatum. These data provide a comprehensive knowledge for UXS and UAXS families in plants.

译文

关键信息: 本研究首先确定了OcUAXS2和OcUXS1-3参与尾O的抗癌多糖生物合成。UDP-木糖合酶 (UXS) 和UDP-D-apiose/UDP-D-木糖合酶 (UAXS) 均能够将UDP-D-葡萄糖醛酸转化为UDP-D-木糖,被认为可以将木糖基残基转移至ornitogalum caudatum Ait中的抗癌多糖生物合成。然而,从未记录过编码来自尾O的两种酶的基因的cDNA隔离和功能表征。以前,在我们的实验室中进行了尾O的转录组测序。在这项研究中,首先基于RNA-Seq数据检索了总共六个和两个编码UXS和UAXS的单基因。然后通过逆转录聚合酶链反应 (rt-pcr) 从尾O的转录组中成功分离出八个假定的基因。系统发育分析表明,六种推定的UXS亚型可分为三种类型,一种是可溶性的,两种是明显的膜结合的。此外,两种UAXS同工酶被预测为可溶形式。随后,通过分别在大肠杆菌中的功能表达,这些候选cdna被表征为真正的基因。尽管UXS和UAXS催化了相同的反应,但它们的生化特性差异很大。值得注意的是,建立了用于UAXS的UDP-D-木糖/UDP-D-apiose的比例开关,该开关被认为有助于其生物技术应用。此外,还产生了一系列突变体来测试NAD结合基序GxxGxxG的功能。最重要的是,本研究确定了OcUAXS2和OcUXS1-3参与尾叶中含木糖多糖的生物合成。这些数据为植物中的UXS和UAXS家族提供了全面的知识。

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