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一种合成紫杉烷二萜的通用策略。

A general strategy for the synthesis of taxane diterpenes.

机构信息

University of Konstanz, Department of Chemistry, Konstanz, Germany.

Scripps Research, La Jolla, CA, USA.

出版信息

Nature. 2024 Aug;632(8025):543-549. doi: 10.1038/s41586-024-07675-8. Epub 2024 Jun 11.

Abstract

The carbon skeleton of any organic molecule serves as the foundation for its three-dimensional structure, playing a pivotal role in determining its physical and biological properties. As such, taxane diterpenes are one of the most well-known natural product families, primarily owing to the success of their most prominent compound, paclitaxel, an effective anticancer therapeutic for more than 25 years. In contrast to classical taxanes, the bioactivity of cyclotaxanes (also referred to as complex taxanes) remains significantly underexplored. The carbon skeletons of these two groups of taxanes differ significantly, and so would typically their own distinct synthetic approaches. Here we report a versatile synthetic strategy based on the interconversion of complex molecular frameworks, providing general access to the wider taxane diterpene family. A range of classical and cyclotaxane frameworks was prepared including, among others, the total syntheses of taxinine K (2), canataxapropellane (5) and dipropellane C from a single advanced intermediate. The synthetic approach deliberately eschews biomimicry, emphasizing instead the power of stereoelectronic control in orchestrating the interconversion of polycyclic frameworks.

摘要

任何有机分子的碳骨架都作为其三维结构的基础,在决定其物理和生物性质方面起着关键作用。因此,紫杉烷二萜是最著名的天然产物家族之一,主要归因于其最突出的化合物紫杉醇的成功,紫杉醇作为一种有效的抗癌治疗药物已经超过 25 年。与经典紫杉烷不同,环紫杉烷(也称为复杂紫杉烷)的生物活性仍然未得到充分探索。这两组紫杉烷的碳骨架有很大的不同,因此通常会有自己独特的合成方法。在这里,我们报告了一种基于复杂分子框架相互转化的通用合成策略,为更广泛的紫杉烷二萜家族提供了通用的方法。我们制备了一系列的经典和环紫杉烷骨架,包括 taxinine K(2)、canataxapropellane(5)和 dipropellane C 的全合成,这些化合物都可以从单个的高级中间体中得到。该合成方法故意避免了仿生学,而是强调了立体电子控制在协调多环框架相互转化中的作用。

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