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双吡咯烷吲哚啉表(多)硫二氧杂哌嗪(BPI-ETPs)和简化类似物:结构特征、生物活性和全合成。

Bispyrrolidinoindoline Epi(poly)thiodioxopiperazines (BPI-ETPs) and Simplified Mimetics: Structural Characterization, Bioactivities, and Total Synthesis.

机构信息

CINBIO, ORCHID Group, Departmento de Química Orgánica, Universidade de Vigo, 36310 Vigo, Spain.

出版信息

Molecules. 2022 Nov 4;27(21):7585. doi: 10.3390/molecules27217585.

Abstract

Within the 2,5-dioxopiperazine-containing natural products generated by "head-to-tail" cyclization of peptides, those derived from tryptophan allow further structural diversification due to the rich chemical reactivity of the indole heterocycle, which can generate tetracyclic fragments of hexahydropyrrolo[2,3-]indole or pyrrolidinoindoline skeleton fused to the 2,5-dioxopiperazine. Even more complex are the dimeric bispyrrolidinoindoline epi(poly)thiodioxopiperazines (BPI-ETPs), since they feature transannular (poly)sulfide bridges connecting C3 and C6 of their 2,5-dioxopiperazine rings. Homo- and heterodimers composed of diastereomeric epi(poly)thiodioxopiperazines increase the complexity of the family. Furthermore, putative biogenetically generated downstream metabolites with C11 and C11'-hydroxylated cores, as well as deoxygenated and/or oxidized side chain counterparts, have also been described. The isolation of these complex polycyclic tryptophan-derived alkaloids from the classical sources, their structural characterization, the description of the relevant biological activities and putative biogenetic routes, and the synthetic efforts to generate and confirm their structures and also to prepare and further evaluate structurally simple analogs will be reported.

摘要

在由肽“头尾”环化生成的含有 2,5-二氧代哌嗪的天然产物中,那些衍生自色氨酸的产物由于吲哚杂环的丰富化学反应性而允许进一步的结构多样化,其可以生成六氢吡咯并[2,3-]吲哚或吡咯烷并吲哚啉骨架的四环片段融合到 2,5-二氧代哌嗪上。更复杂的是二聚双吡咯烷并吲哚啉表(多)硫代二氧杂环戊烷(BPI-ETP),因为它们具有连接其 2,5-二氧代哌嗪环的 C3 和 C6 的反式(多)硫桥。由非对映表(多)硫代二氧杂环戊烷组成的同二聚体和杂二聚体增加了该家族的复杂性。此外,还描述了具有 C11 和 C11'-羟基化核以及去氧和/或氧化侧链对应物的假定生物生成的下游代谢物。这些复杂的多环色氨酸衍生生物碱从经典来源的分离、它们的结构特征描述、相关生物活性和假定生物发生途径的描述,以及生成和确认它们的结构以及制备和进一步评估结构简单的类似物的合成努力将被报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f73/9659040/948fbbec0ed5/molecules-27-07585-g001.jpg

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