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首页> 外文期刊>European journal of organic chemistry >Total syntheses of the gregatins A-D and aspertetronin A: Structure revisions of these compounds and of aspertetronin B, together with plausible structure revisions of gregatin E, cyclogregatin, graminin A, the penicilliols A and B, and the huaspenones A and B
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Total syntheses of the gregatins A-D and aspertetronin A: Structure revisions of these compounds and of aspertetronin B, together with plausible structure revisions of gregatin E, cyclogregatin, graminin A, the penicilliols A and B, and the huaspenones A and B

机译:聚集蛋白A-D和曲霉毒素A的总合成:这些化合物和曲霉毒素B的结构修饰,以及聚集蛋白E,环凝素,graminin A,青霉酚A和B以及松柏油苷A和B的合理结构修饰

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Comprehensive comparisons of ~1H and ~(13)C NMR chemical shift values in the furanone cores a, b, and c provide plausible support for a reassessment of the furanone nuclei of the title compounds from b to c. Total syntheses via enantiomerically pure lactic esters were based on the Seebach-Fráter "self-reproduction of stereocenters" methodology. Attachment of the hexadienyl side-chain in a trans,trans-selective manner was achieved by addition of the Seebach-Fráter enolate to trans-hex-4-en-1-al rather than to trans-hex-3-en-1-al. The type-c furanone cores of the synthetic materials were reached by single or double acylation of a model γ-hydroxy-β-oxo ester (compound 50) and its hexadiene-containing counterpart 29. Our syntheses confirmed the novel connectivities in six compounds. In addition, they required revision of the configuration of a quaternary carbon atom in five cases. Moreover, they allowed elucidation of the configurations of four previously unassigned stereocenters. Hindsight analyses of why the furanone cores of the title compounds had been misinterpreted as a and/or b instead of c are given. Why the stereocenters in the heterocycles had been incorrectly configured, on the bases (a) of relay studies in the 1960s, and (b) of a 1984 total synthesis of gregatin B, is also discussed.
机译:呋喃酮核a,b和c中〜1H和〜(13)C NMR化学位移值的全面比较为重新评估标题化合物从b到c的呋喃酮核提供了合理的支持。通过对映体纯的乳酸酯进行的总合成基于Seebach-Fráter“立体中心的自我复制”方法。通过将Seebach-Fráter烯酸酯添加到trans-hex-4-en-1-al而不是trans-hex-3-en-1-上,可以以反式,反式选择性方式连接己二烯基侧链。等合成材料的c型呋喃酮核是通过对模型γ-羟基-β-氧代酸酯(化合物50)及其含己二烯的对应物29进行单或双酰化作用而得到的。我们的合成证实了六种化合物的新型连接性。此外,他们要求在五种情况下修改季碳原子的构型。此外,他们还允许阐明四个以前未分配的立体中心的配置。给出了为什么标题化合物的呋喃酮核心被误解为a和/或b而不是c的事后分析。还基于(a)1960年代的中继研究和(b)1984年聚集蛋白B的全合成,讨论了为什么杂环中的立体中心配置不正确。

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