Department of Chemistry, Colorado State University, 1301 Center Avenue, Fort Collins, CO 80523, USA.
Nat Prod Rep. 2018 Jun 20;35(6):532-558. doi: 10.1039/c7np00042a.
Covering: up to February 2017 Various fungi of the genera Aspergillus, Penicillium, and Malbranchea produce prenylated indole alkaloids possessing a bicyclo[2.2.2]diazaoctane ring system. After the discovery of distinct enantiomers of the natural alkaloids stephacidin A and notoamide B, from A. protuberus MF297-2 and A. amoenus NRRL 35660, another fungi, A. taichungensis, was found to produce their diastereomers, 6-epi-stephacidin A and versicolamide B, as major metabolites. Distinct enantiomers of stephacidin A and 6-epi-stephacidin A may be derived from a common precursor, notoamide S, by enzymes that form a bicyclo[2.2.2]diazaoctane core via a putative intramolecular hetero-Diels-Alder cycloaddition. This review provides our current understanding of the structural and stereochemical homologies and disparities of these alkaloids. Through the deployment of biomimetic syntheses, whole-genome sequencing, and biochemical studies, a unified biogenesis of both the dioxopiperazine and the monooxopiperazine families of prenylated indole alkaloids constituted of bicyclo[2.2.2]diazaoctane ring systems is presented.
截至 2017 年 2 月,各种曲霉属、青霉属和 Malbranchea 属真菌产生具有双环[2.2.2]二氮杂辛烷环系统的prenylated吲哚生物碱。在发现天然生物碱 Stephacidin A 和 Notoamide B 的独特对映异构体之后,从 A. protuberus MF297-2 和 A. amoenus NRRL 35660 中发现了另一种真菌 A. taichungensis,其产生了它们的非对映异构体 6-epi-stephacidin A 和 versicolamide B,作为主要代谢物。Stephacidin A 和 6-epi-stephacidin A 的独特对映异构体可能源自共同的前体 notoamide S,通过形成双环[2.2.2]二氮杂辛烷核心的酶,通过假定的分子内杂 Diels-Alder 环加成来形成。这篇综述提供了我们对这些生物碱的结构和立体化学同系物和差异的最新认识。通过仿生合成、全基因组测序和生化研究,提出了双环[2.2.2]二氮杂辛烷环系统的二氧杂哌嗪和单氧杂哌嗪类 prenylated吲哚生物碱的统一生物合成。