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Component-Based Syntheses of Trioxacarcin A DC-45-A1 and Structural Analogs

机译:Trioxacarcin ADC-45-A1和结构类似物的基于组分的合成

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摘要

The trioxacarcins are polyoxygenated, structurally complex natural products that potently inhibit the growth of cultured human cancer cells. Here we describe syntheses of trioxacarcin A, DC-45-A1, and structural analogs by latestage, stereoselective glycosylation reactions of fully functionalized, differentially protected aglycon substrates. Key issues addressed in this work include the identification of an appropriate means to activate and protect each of the two 2-deoxysugar components, trioxacarcinose A and trioxacarcinose B, as well as a viable sequencing of the glycosidic couplings. The convergent, component-based sequence we present allows for rapid construction of structurally diverse, synthetic analogs that would be inaccessible by any other means, in amounts required to support biological evaluation. Analogs arising from modification of four of five modular components are assembled in 11 steps or fewer. The majority of these are found to be active in antiproliferative assays using cultured human cancer cells.
机译:三氧杂rc呤是多加氧的,结构复杂的天然产物,可有效抑制培养的人类癌细胞的生长。在这里,我们通过功能齐全的,差异保护的糖苷配体底物的最新,立体选择性糖基化反应来描述三氧卡因A,DC-45-A1和结构类似物的合成。这项工作中解决的关键问题包括确定适当的手段来激活和保护两个2-脱氧糖组分三氧合糖A和三氧合糖B,以及可行的糖苷偶联测序。我们提出的基于组件的融合序列允许快速构建结构多样的合成类似物,而通过任何其他方式都无法获得支持生物学评估所需的数量。修改五个模块化组件中的四个组件而产生的类似物以11个步骤或更少的步骤进行组装。发现其中大多数在使用培养的人类癌细胞的抗增殖试验中具有活性。

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