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Critical enzymes for biosynthesis of cucurbitacin derivatives in watermelon and their biological significance

机译:西瓜中葫芦素衍生物生物合成的关键酶及其生物学意义

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Various cucurbitacins have been isolated, and their structures have been elucidated. Owing to their economic potential and importance as active pharmacological compounds, their cytotoxicity in various cancer cells has been assessed. Here, we mined several candidate genes with potential involvement in cucurbitacin biosynthesis in watermelon (Citrullus lanatus) and performed in vitro enzymatic assays and instrumental analyses using various substrates to identify cucurbitacin functions and products. Enzymatic activities of two acetyltransferases (ACTs) and one UDP-glucosyltransferase (UGT) against cucurbitacins were confirmed, resulting in the synthesis of novel cucurbitacins in vivo and/or in vitro to our knowledge. As ACTs and UGT are involved in the dynamic conversion of cucurbitacins by catalyzing acetylation and glucosylation at moieties in the cucurbitacins skeleton, these findings improve our knowledge on how these genes contribute to the diversity of cucurbitacins. Kim et al. use RNAseq of two watermelons to select candidate genes coding for enzymes that catalyze modifications of cucurbitacins. They characterise four of the 16 candidate enzymes (3 different acetyltransferases and one UDP-glucosyltransferase) by HPLC, LC-MS, NMR, and in vitro enzymatic assay. They further show with in vivo assay in Drosophila, that acetylation of cucurbitacin increases neuronal activity in insects.
机译:已经分离了各种葫芦素,并且它们的结构已经阐明。由于其作为活性药物化合物的经济潜力和重要性,他们的各种癌细胞中的细胞毒性已经评估。在这里,我们在西瓜(柑橘类Lanatus)中挖出了几种候选基因,其潜在参与葫芦素生物合成,并使用各种基材进行体外酶测定和仪器分析以鉴定葫芦素功能和产品。确认了两种乙酰转移酶(作用)和一种UDP-葡糖糖基转移酶(UGT)对葫芦酸的酶活性,导致在体内和/或体外合成新型葫芦酸。由于作用和UGT通过催化葫芦素在葫芦素骨架中的乙酰化和葡萄糖苷化来涉及葫芦酸的动态转化,这些结果可以提高关于这些基因如何促进葫芦素的多样性的知识。 Kim等人。使用两种西瓜的RNAseq选择编码的候选基因,用于催化葫芦素的修饰。它们用HPLC,LC-MS,NMR和体外酶测定表征16种候选酶(3种不同乙酰转移酶和一个UDP-葡糖糖苷酶)中的四种。他们进一步展现在果蝇中的体内测定中,Cucurbitacin的乙酰化增加了昆虫中的神经元活性。

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