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从 Periconia macrospinosa KT3863 中分离出 Peribysins O、P 和 Q 以及通过 Periconia byssoides OUPS-N133 对 Peribysin E 二乙酸酯的构象进行重新研究。

Isolation of Peribysins O, P, and Q from Periconia macrospinosa KT3863 and Configurational Reinvestigation of Peribysin E Diacetate from Periconia byssoides OUPS-N133.

机构信息

Faculty of Agriculture and Life Science , Hirosaki University , 3-Bunkyo-cho , Hirosaki , 036-8561 , Japan.

Osaka University of Pharmaceutical Sciences , 4-20-1, Nasahara , Takatsuki, Osaka , 569-1094 , Japan.

出版信息

J Nat Prod. 2019 Apr 26;82(4):911-918. doi: 10.1021/acs.jnatprod.8b01001. Epub 2019 Feb 15.

Abstract

Peribysins O (1), P (3), and Q (4) were isolated from Periconia macrospinosa KT3863. The relative configuration of the 6,7-epoxide of 1 was elucidated by performing quantitative NOE experiments. The structure of 2, which is a tautomer of 1 present in CDCl solutions in 5% abundance, was also fully characterized by NMR analysis. Their absolute configurations were independently determined by the modified Mosher's method (for 1 and 3), the electronic circular dichroism (ECD) exciton coupling theory after conversion into dibenzoate 9 (for 3), and theoretical ECD calculations (for 1, 3, and 4). The obtained relative structures 1, 3, and 4 were verified by calculating their C chemical shifts using density functional theory (DFT). Although the established (4 S)-enantiomer for 1-4 is in accordance with that of other peribysins isolated from the related fungus Periconia byssoides OUPS-N133, Danishefsky's total synthesis of peribysin E (5) led to the subsequent revision of the (2 R,4 S,5 R,6 S,7 S,8 R,10 S)-enantiomer to the (2 S,4 R,5 S,6 R,7 R,8 S,10 R)-enantiomer. This discordance led us to reinvestigate the configuration using time-dependent DFT-based ECD spectral calculations, which supported the original (4 S)-enantiomer.

摘要

从 Periconia macrospinosa KT3863 中分离得到化合物 Peribysins O(1)、P(3)和 Q(4)。通过进行定量 NOE 实验,阐明了 1 的 6,7-环氧化物的相对构型。2 的结构也通过 NMR 分析得到了充分的表征,2 是 1 在 CDCl 溶液中的互变异构体,丰度为 5%。它们的绝对构型通过改进的 Mosher 法(用于 1 和 3)、转化为二苯甲酸酯 9 后的电子圆二色性(ECD)激发子偶合理论(用于 3)以及理论 ECD 计算(用于 1、3 和 4)独立确定。通过使用密度泛函理论(DFT)计算它们的 C 化学位移,验证了获得的相对结构 1、3 和 4。尽管为 1-4 建立的(4 S)-对映异构体与从相关真菌 Periconia byssoides OUPS-N133 中分离得到的其他 Peribysin 一致,但 Danishefsky 对 Peribysin E(5)的全合成导致随后对(2 R,4 S,5 R,6 S,7 S,8 R,10 S)-对映异构体进行修订为(2 S,4 R,5 S,6 R,7 R,8 S,10 R)-对映异构体。这种不一致促使我们使用基于时间相关的 DFT 的 ECD 光谱计算重新研究构型,这支持了原始的(4 S)-对映异构体。

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