首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: A multiply convergent platform for the synthesis of trioxacarcins
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Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: A multiply convergent platform for the synthesis of trioxacarcins

机译:面向小分子探针和药物的有机合成特殊功能:合成三氧沙卡汀的多重会聚平台

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摘要

Many first-line cancer drugs are natural products or are derived from them by chemical modification. The trioxacarcins are an emerging class of molecules of microbial origin with potent antiproliferative effects, which may derive from their ability to covalently modify duplex DNA. All trioxacarcins appear to be derivatives of a nonglycosylated natural product known as DC-45-A2. To explore the potential of the trioxacarcins for the development of small-molecule drugs and probes, we have designed a synthetic strategy toward the trioxacarcin scaffold that enables access to both the natural trioxacarcins and nonnatural structural variants. Here, we report a synthetic route to DC-45-A2 from a differentially protected precursor, which in turn is assembled in just six steps from three components of similar structural complexity. The brevity of the sequence arises from strict adherence to a plan in which strategic bond-pair constructions are staged at or near the end of the synthetic route.
机译:许多一线抗癌药物是天然产物,或通过化学修饰从中衍生而来。三恶沙卡菌素是一类新兴的具有微生物起源的分子,具有强大的抗增殖作用,这可能源于它们共价修饰双链体DNA的能力。所有的三氧杂rc呤似乎都是非糖基化天然产物DC-45-A2的衍生物。为了探索三氧沙卡丁星在开发小分子药物和探针方​​面的潜力,我们设计了一种针对三氧沙卡星支架的合成策略,该策略可同时使用天然的三氧卡沙星和非天然的结构变体。在这里,我们报告了从受保护程度不同的前体到DC-45-A2的合成路线,而该路线又由结构相似程度相似的三个组件仅用六个步骤组装而成。该顺序的简洁起因于严格遵守一项计划,在该计划中,战略性键对的构建在合成路线的末端或附近进行。

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