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通过从头合成唑环:策略和组件组装实现 phorboxazole A 的全合成。

Total synthesis of phorboxazole A via de novo oxazole formation: strategy and component assembly.

出版信息

J Am Chem Soc. 2011 Feb 9;133(5):1484-505. doi: 10.1021/ja108906e. Epub 2010 Dec 29.

Abstract

The phorboxazole natural products are among the most potent inhibitors of cancer cell division, but they are essentially unavailable from natural sources at present. Laboratory syntheses based upon tri-component fragment coupling strategies have been developed that provide phorboxazole A and analogues in a reliable manner and with unprecedented efficiency. This has been orchestrated to occur via the sequential or simultaneous formation of both of the natural product's oxazole moieties from two serine-derived amides, involving oxidation-cyclodehydrations. The optimized preparation of three pre-assembled components, representing carbons 3-17, 18-30, and 31-46, has been developed. This article details the design and syntheses of these three essential building blocks. The convergent coupling approach is designed to facilitate the incorporation of structural changes within each component to generate unnatural analogues, targeting those with enhanced therapeutic potential and efficacy.

摘要

磷霉素天然产物是目前为止最有效的癌细胞分裂抑制剂之一,但它们在自然界中基本无法获得。目前已经开发出基于三组分片段偶联策略的实验室合成方法,能够以可靠的方式和前所未有的效率提供磷霉素 A 及其类似物。这是通过两个丝氨酸衍生的酰胺中两个天然产物的恶唑部分的顺序或同时形成来实现的,涉及氧化-环脱水。已经开发了三种预组装成分的优化制备方法,分别代表 3-17、18-30 和 31-46 个碳原子。本文详细介绍了这三个基本构建块的设计和合成。这种收敛偶联方法旨在促进每个组件内结构变化的引入,以生成具有增强治疗潜力和疗效的非天然类似物。

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