Suppr超能文献

二环氧角鲨烯酶促环化生成杂环三萜。

Enzymatic cyclization of dioxidosqualene to heterocyclic triterpenes.

作者信息

Shan Hui, Segura Michael J R, Wilson William K, Lodeiro Silvia, Matsuda Seiichi P T

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005, USA.

出版信息

J Am Chem Soc. 2005 Dec 28;127(51):18008-9. doi: 10.1021/ja055822g.

Abstract

Oxidosqualene cyclases normally produce triterpenes from 2,3-(S)-oxidosqualene (OS) but also can cyclize its minor companion (3S,22S)-2,3:22,23-dioxidosqualene (DOS). We explored DOS cyclization in plant triterpene synthesis using a recombinant lupeol synthase (LUP1) heterologously expressed in yeast. Incubation of LUP1 with 3S,22S-DOS gave epoxydammaranes epimeric at C20 and a 17,24-epoxybaccharane in a 4:2:3 ratio. The products reflected a new mechanistic paradigm for DOS cyclization. The structures were determined by NMR and GC-MS, and recent errors in the epoxydammarane literature were rectified. Some DOS metabolites are likely candidates for regulating triterpenoid biosynthesis, while others may be precursors of saponin aglycones. Our in vivo experiments in yeast generated substantial amounts of DOS metabolites in a single enzymatic step, suggesting a seminal role for the DOS shunt pathway in the evolution of saponin synthesis. Quantum mechanical calculations revealed oxonium ion intermediates, whose reactivity altered the usual mechanistic patterns of triterpene synthesis. Further analysis indicated that the side chain of the epoxydammarenyl cation intermediate is in an extended conformation. The overall results establish new roles for DOS in triterpene synthesis and exemplify how organisms can increase the diversity of secondary metabolites without constructing new enzymes.

摘要

氧化角鲨烯环化酶通常从2,3-(S)-氧化角鲨烯(OS)生成三萜类化合物,但也能使其次要异构体(3S,22S)-2,3:22,23-二氧化角鲨烯(DOS)环化。我们利用在酵母中异源表达的重组羽扇豆醇合酶(LUP1),探索了植物三萜类化合物合成中的DOS环化作用。将LUP1与3S,22S-DOS一起温育,得到了在C20处为差向异构体的环氧达玛烷类化合物以及一种17,24-环氧香树脂烷,其比例为4:2:3。这些产物反映了一种新的DOS环化作用机制范式。通过核磁共振(NMR)和气相色谱-质谱联用(GC-MS)确定了其结构,并纠正了环氧达玛烷文献中最近出现的错误。一些DOS代谢产物可能是调节三萜类生物合成的候选物质,而其他一些可能是皂苷苷元的前体。我们在酵母中的体内实验在单个酶促步骤中产生了大量的DOS代谢产物,这表明DOS分流途径在皂苷合成的进化中起着重要作用。量子力学计算揭示了鎓离子中间体,其反应活性改变了三萜类化合物合成的通常机制模式。进一步分析表明,环氧达玛烯基阳离子中间体的侧链处于伸展构象。总体结果确立了DOS在三萜类化合物合成中的新作用,并例证了生物体如何在不构建新酶的情况下增加次生代谢产物的多样性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验