首页> 外文期刊>The Journal of Organic Chemistry >Asymmetric [C + NC + CC] coupling entry to the naphthyridinomycin natural product family: Formal total synthesis of cyanocycline A and bioxalomycin β2
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Asymmetric [C + NC + CC] coupling entry to the naphthyridinomycin natural product family: Formal total synthesis of cyanocycline A and bioxalomycin β2

机译:萘啶霉素天然产物家族的不对称[C + NC + CC]偶联进入:氰基环素A和生物氧霉素β2的正式合成

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摘要

A full account of our [C + NC + CC] coupling approach to the naphthyridinomycin family of natural products is presented, culminating in formal total syntheses of cyanocycline A and bioxalomycin β2. The key complexity-building reaction in the synthesis involves the Ag ~I-catalyzed endo-selective [C + NC + CC] coupling of aldehyde 7, (S)-glycyl sultam 8, and methyl acrylate (9) to provide the highly functionalized pyrrolidine 6, which was carried forward to an advanced intermediate (compound 33) in Fukuyama's synthesis of cyanocycline A. Since cyanocycline A has been converted to bioxalomycin β2, this constitutes a formal synthesis of the latter natural product as well. The multicomponent reaction-based strategy reduces the number of steps previously needed to assemble these complex molecular targets by one-third. This work highlights the utility of the asymmetric [C + NC + CC] coupling reaction in the context of a complex pyrrolidine-containing target and provides an illustrative guide for its application to other synthesis problems. The synthesis also fueled collaborative biological and biochemical research that identified a unique small molecule inhibitor of cell migration (compound 30).
机译:完整介绍了我们的[C + NC + CC]与天然产品萘甲霉素系列的偶联方法,最终完成了氰基环素A和生物霉素β2的正式总合成。合成中关键的复杂性构建反应涉及醛7,(S)-甘氨酰舒马8和丙烯酸甲酯(9)的Ag〜I催化的内选择性[C + NC + CC]偶联,以提供高度官能化的吡咯烷6,在福山的氰基环素A合成中被带入高级中间体(化合物33)。由于氰基环素A已转化为生物草霉素β2,因此也构成了后者的天然产物的正式合成。基于多组分反应的策略将以前组装这些复杂分子靶标所需的步骤数减少了三分之一。这项工作突出了不对称[C + NC + CC]偶联反应在含吡咯烷的复杂靶标中的应用,并为将其应用于其他合成问题提供了说明性指南。该合成还促进了生物和生化研究的合作,该研究确定了细胞迁移的独特小分子抑制剂(化合物30)。

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