首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of reblastatin, autolytimycin, and non-benzoquinone analogues: Potent inhibitors of heat shock protein 90
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Synthesis of reblastatin, autolytimycin, and non-benzoquinone analogues: Potent inhibitors of heat shock protein 90

机译:Reblastatin,autolytimycin和non-benzoquinone类似物的合成:热休克蛋白90的有效抑制剂

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摘要

A full account of an asymmetric synthesis of reblastatin (1) and the first total synthesis of autolytimycin (2) and related structural compounds is described. The syntheses expand the utility of a highly regio- and diastereoselective hydrometalation aldehyde addition sequence to assemble the fully functionalized ansa chain of the natural products. Also documented is an intramolecular copper-mediated amidation reaction to close the 19-membered macrolactams. The amidation reaction was also employed for the generation of structural derivatives (6-9) of phenolic ansamycins. Ansamycin natural products and selected structural analogues were evaluated in a competitive binding assay to breast cancer cell lysate and a cytotoxicity assay. Both reblastatin (1) and autolytimycin (2) were shown to bind the heat shock protein 90 with enhanced binding activity (~25 nM) than 17-allylamino-17-demethoxygeldanamycin (17-AAG, 4), a geldanamycin (3) derivative currently under evaluation for treatment of cancer (~100 nM).
机译:完整描述了全角质素(1)的不对称合成以及自体霉素(2)和相关结构化合物的第一个全合成。该合成扩展了高度区域和非对映选择性加氢醛化加成序列的实用性,以组装天然产物的完全官能化的ansa链。还记录了分子内铜介导的酰胺化反应,以封闭19元大环内酰胺。酰胺化反应也用于产生酚安沙霉素的结构衍生物(6-9)。在与乳腺癌细胞裂解物的竞争性结合测定法和细胞毒性测定法中评估了安沙霉素的天然产物和选定的结构类似物。相比于格尔德霉素(3)衍生物17-烯丙基氨基-17-去甲氧基格尔德霉素(17-AAG,4),再生素(1)和自溶霉素(2)均具有增强的结合活性(〜25 nM)结合热激蛋白90。目前正在评估治疗癌症的方法(〜100 nM)。

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