(+)-布雷费尔丁A、双立体异构体及其类似物的简明全合成及其生物活性

Dr. Mikhail K. Klychnikov, Dr. Radek Pohl, Dr. Ivana Císařová, Dr. Miroslav Hájek, Dr. Ullrich Jahn
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摘要

Brefeldin A是一种重要的天然产物和生物化学工具,具有调节细胞和其他多种生物活性。为了探索其化学空间,报道了一种普遍适用的全合成天然存在的(+)-布雷费尔丁a(BFA)、2-异-BFA及其非对映异构体和具有不同大环大小的类似物的策略。基于持久的自由基效应,通过串联亲核环氧化物开放/布鲁克重排/自由基氧化和随后的热自由基环化组成的短三步序列构建了五元环片段。进一步的关键步骤是不对称醛乙烯化,这使得能够控制BFA的烯丙基羟基的绝对构型,将北侧链和南侧链连接到环戊烷单元的交叉复分解反应,以及最终的Shiina大分子内酯化。测定了所有化合物的细胞毒性活性,几种类似物被证明与BFA具有类似的活性,从而提供了关于骨架中可以变化或必须保守的区域的见解。荧光显微镜显示,BFA和一些非天然类似物在细胞中分解高尔基体,分解和随后的重组时间变化很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Concise Total Syntheses of (+)-Brefeldin A, Diastereomers and Analogs and Their Biological Activity

Concise Total Syntheses of (+)-Brefeldin A, Diastereomers and Analogs and Their Biological Activity

Brefeldin A is an important natural product and biochemical tool with cell-modulating and other diverse biological activities. To explore its chemical space, a generally applicable strategy for total syntheses of naturally occurring (+)-brefeldin A (BFA), 2-epi-BFA, their diastereomers and analogs with varying macrocyclic ring size is reported. The five-membered ring fragment was constructed by a short three-step sequence consisting of tandem nucleophilic epoxide opening/Brook rearrangement/radical oxygenation and subsequent thermal radical cyclization based on the persistent radical effect. Further key steps are asymmetric aldehyde vinylation, which enables control of the absolute configuration at the allylic hydroxy group of BFA, cross-metatheses reactions for attachment of the northern and southern side chains to the cyclopentane unit and final Shiina macrolactonization. The cytotoxic activity of all compounds was determined, and several analogs proved to be similarly active as BFA, providing insight about regions of the skeleton that can be varied or have to be conserved with respect to their biological activities. Fluorescence microscopy revealed that BFA and some non-natural analogs disassemble the Golgi apparatus in cells with large variation of the disassembly and subsequent reassembly times.

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