Hussain Hidayat, Xiao Jianbo, Ali Akbar, Green Ivan R, Westermann Bernhard
Department of Bioorganic Chemistry, Leibniz Institute of Plant Biochemistry, Weinberg 3, Halle (Saale) D-06120, Germany.
International Research Center for Food Nutrition and Safety, Jiangsu University, Zhenjiang 212013, China.
Nat Prod Rep. 2023 Feb 22;40(2):412-451. doi: 10.1039/d2np00033d.
Covering: 2009 to 2021Biosynthetically, most of the syntheses of triterpenes follow the cascade cyclization and rearrangement of the acyclic precursors , squalene (S) and 2,3-oxidosqualene (OS), which lead to the very well known tetra- and pentacyclic triterpene skeletons. Aside from these, numerous other triterpenoid molecules are also reported from various natural sources and their structures are derived from "S" and "OS" some unusual cyclization operations which are different from the usual tetra- and pentacyclic frameworks. Numerous compelling advances have been made and reported in the identification of these unusual cyclized mono-, di-, tri- and tetracyclic triterpenes between 2009 and 2021. Besides a dramatic increase in the newly isolated uncommon cyclized triterpenoids, substantial progress in the (bio)-synthesis of these triterpenes has been published along with significant progress in their biological effects. In this review, 180 new unusual cyclized triterpenoids together with their demonstrated biogenetic pathways, syntheses and biological effects will be categorized and discussed.
2009年至2021年
在生物合成方面,大多数三萜类化合物的合成遵循无环前体角鲨烯(S)和2,3-氧化角鲨烯(OS)的级联环化和重排,这会生成广为人知的四环和五环三萜骨架。除此之外,还从各种天然来源报道了许多其他三萜类分子,它们的结构源自“S”和“OS”,通过一些不同于常见四环和五环骨架的不寻常环化操作。在2009年至2021年间,在鉴定这些不寻常的环化单环、二环、三环和四环三萜方面取得并报道了许多引人注目的进展。除了新分离出的不常见环化三萜类化合物数量大幅增加外,这些三萜类化合物的(生物)合成也取得了实质性进展,同时在它们的生物学效应方面也有显著进展。在本综述中,180种新的不寻常环化三萜类化合物及其已证明的生物合成途径、合成方法和生物学效应将被分类并讨论。