双吡咯烷二吲哚碱类生物碱的全合成策略

IF 10.6 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Zhixian Ma , Ankun Zhou , Chengfeng Xia
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引用次数: 2

摘要

含双吡咯烷酮[2,3-b]吲哚啉(BPI)骨架的环色胺生物碱复合物是一类有趣的天然产物,具有广泛的系统分布、结构多样性和多种生物活性。根据结构特征,BPI生物碱可分为chimonanthine型BPI生物碱、BPI二酮哌嗪类BPI生物碱和BPI epipolythiiodiketopiperazines。这些复杂的分子在20世纪60年代被分离和鉴定后不久就引起了极大的关注。由于结构的复杂性,这些环色胺生物碱的全合成是具有挑战性的。然而,在过去六十年中取得了显著的进展;特别是,已经成功地建立了几种构造邻全碳季立体中心的方法。本文对这些生物碱的结构多样性和化学合成进行了综述。BPI生物碱的合成主要采用双氧吲哚氧化二聚化、还原二聚化和烷基化等方法。本综述的目的是提出组装BPI骨架的总体策略和控制立体中心的努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Strategies for total synthesis of bispyrrolidinoindoline alkaloids

Strategies for total synthesis of bispyrrolidinoindoline alkaloids

Covering up to 2021

Complex cyclotryptamine alkaloids with a bispyrrolidino[2,3-b]indoline (BPI) skeleton are an intriguing family of natural products, exhibiting wide systematic occurrences, large structural diversity, and multiple biological activities. Based on their structural characteristics, BPI alkaloids can be classified into chimonanthine-type BPI alkaloids, BPI diketopiperazines, and BPI epipolythiodiketopiperazines. These intricate molecules have captivated great attention soon after their isolation and identification in the 1960s. Due to the structural complexity, the total synthesis of these cyclotryptamine alkaloids is challenging. Nevertheless, remarkable progress has been achieved in the last six decades; in particular, several methods have been successfully established for the construction of vicinal all-carbon quaternary stereocenters. In this review, the structural diversity and chemical synthesis of these BPI alkaloids were summarized. BPI alkaloids are mainly synthesized by the methods of oxidative dimerization, reductive dimerization, and alkylation of bisoxindole. The purpose of this review is to present overall strategies for assembling the BPI skeleton and efforts towards controlling the stereocenters.

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来源期刊
Natural Product Reports
Natural Product Reports 化学-生化与分子生物学
CiteScore
21.20
自引率
3.40%
发文量
127
审稿时长
1.7 months
期刊介绍: Natural Product Reports (NPR) serves as a pivotal critical review journal propelling advancements in all facets of natural products research, encompassing isolation, structural and stereochemical determination, biosynthesis, biological activity, and synthesis. With a broad scope, NPR extends its influence into the wider bioinorganic, bioorganic, and chemical biology communities. Covering areas such as enzymology, nucleic acids, genetics, chemical ecology, carbohydrates, primary and secondary metabolism, and analytical techniques, the journal provides insightful articles focusing on key developments shaping the field, rather than offering exhaustive overviews of all results. NPR encourages authors to infuse their perspectives on developments, trends, and future directions, fostering a dynamic exchange of ideas within the natural products research community.
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