首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Third DWF1 paralog in Solanaceae sterol Δ24-isomerase branches withanolide biosynthesis from the general phytosterol pathway
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PNAS Plus: Third DWF1 paralog in Solanaceae sterol Δ24-isomerase branches withanolide biosynthesis from the general phytosterol pathway

机译:PNAS Plus:茄科中的第三个DWF1旁系同源物固醇Δ24-异构酶通过一般植物固醇途径的分支与醇化物生物合成

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摘要

A large part of chemodiversity of plant triterpenes is due to the modification of their side chains. Reduction or isomerization of double bonds in the side chains is often an important step for the diversification of triterpenes, although the enzymes involved are not fully understood. Withanolides are a large group of structurally diverse C28 steroidal lactones derived from 24-methylenecholesterol. These compounds are found in the Indian medicinal plant Withania somnifera, also known as ashwagandha, and other members of the Solanaceae. The pathway for withanolide biosynthesis is unknown, preventing sustainable production via white biotechnology and downstream pharmaceutical usages. In the present study, based on genome and transcriptome data we have identified a key enzyme in the biosynthesis of withanolides: a DWF1 paralog encoding a sterol Δ24-isomerase (24ISO). 24ISO originated from DWF1 after two subsequent duplication events in Solanoideae plants. Withanolides and 24ISO appear only in the medicinal plants in the Solanoideae, not in crop plants such as potato and tomato, indicating negative selection during domestication. 24ISO is a unique isomerase enzyme evolved from a reductase and as such has maintained the FAD-binding oxidoreductase structure and requirement for NADPH. Using phylogenetic, metabolomic, and gene expression analysis in combination with heterologous expression and virus-induced gene silencing, we showed that 24ISO catalyzes the conversion of 24-methylenecholesterol to 24-methyldesmosterol. We propose that this catalytic step is the committing step in withanolide biosynthesis, opening up elucidation of the whole pathway and future larger-scale sustainable production of withanolides and related compounds with pharmacological properties.
机译:植物三萜的化学多样性很大一部分是由于其侧链的修饰。侧链中双键的还原或异构化通常是使三萜烯多样化的重要步骤,尽管所涉及的酶尚未完全了解。 Withanolides是一大批衍生自24-亚甲基胆固醇的结构多样的C28甾体内酯。这些化合物存在于印度药用植物Withania somnifera(也称为ashwagandha)和茄科的其他成员中。糖苷类生物合成的途径尚不清楚,这阻碍了通过白色生物技术和下游药物用途的可持续生产。在本研究中,基于基因组和转录组数据,我们已经确定了生物化学中Withanolides的关键酶:编码固醇Δ 24 -异构酶(24ISO)的DWF1旁系同源物。在随后的茄科植物中发生两次重复事件后,24ISO源自DWF1。 Withanolides和24ISO仅出现在茄科的药用植物中,而不出现在马铃薯和番茄等农作物中,表明驯化过程中的选择阴性。 24ISO是从还原酶进化而来的独特异构酶,因此一直保持FAD结合氧化还原酶的结构和对NADPH的要求。使用系统发生,代谢组学和基因表达分析与异源表达和病毒诱导的基因沉默相结合,我们表明24ISO催化24亚甲基胆固醇转化为24甲基去胆固醇。我们建议该催化步骤是withanolide生物合成中的重要步骤,为阐明全路径以及未来大规模可持续生产withanolides和具有药理特性的相关化合物开辟了道路。

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