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多杀菌素天然产物合成的研究。异奇霉素的首次全合成。

Studies Toward the Syntheses of Pluramycin Natural Products. The First Total Synthesis of Isokidamycin.

作者信息

O'Keefe B Michael, Mans Douglas M, Kaelin David E, Martin Stephen F

机构信息

Department of Chemistry and Biochemistry The University of Texas at Austin, 1 University Station A5300 Austin, TX 78712-0165.

出版信息

Tetrahedron. 2011 Sep 2;67(35):6524-6538. doi: 10.1016/j.tet.2011.05.117.

Abstract

We report the first total synthesis of the complex C-aryl glycoside isokidamycin, the epimer of the naturally-occurring pluramycin antibiotic kidamycin. The synthesis features a highly efficientDiels-Alder reaction between a substituted naphthyne and a glycosylatedfuran to form the anthracene core bearing a pendant angolosamine C-glycoside. The regiochemical outcome of the Diels-Alder reaction was controlled by employing a disposable silicon-tether to link the reactive napthyne and the glycosyl furan, rendering the cycloaddition intramolecular. The benzopyranone moietyof the aromatic nucleus was appended by cyclization of a functionalized vinylogous amide onto an advanced anthrol intermediate. The vancosamine amino glycoside was introduced by an O→C-glycoside rearrangement that produced the β-anomer. Subsequent refunctionalizations then led to isokidamycin.

摘要

我们报道了复杂的C-芳基糖苷异基石霉素的首次全合成,它是天然存在的多霉素抗生素基石霉素的差向异构体。该合成的特点是在一个取代萘炔和一个糖基化呋喃之间进行高效的狄尔斯-阿尔德反应,以形成带有侧链安哥洛糖胺C-糖苷的蒽核。狄尔斯-阿尔德反应的区域化学结果通过使用一个一次性硅链连接反应性萘炔和糖基呋喃来控制,使环加成反应成为分子内反应。芳香核的苯并吡喃酮部分通过将一个官能化的烯醇酰胺环化到一个高级蒽醇中间体上而接上。万古糖胺氨基糖苷通过一个产生β-异头物的O→C-糖苷重排反应引入。随后的重新官能化反应进而得到异基石霉素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8352/3145363/8476ccf3f220/nihms-301471-f0001.jpg

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