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微生物免疫抑制剂FR901483的全合成研究。

Studies on a total synthesis of the microbial immunosuppresive agent FR901483.

作者信息

Kropf Jeffrey E, Meigh Ivona C, Bebbington Magnus W P, Weinreb Steven M

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Org Chem. 2006 Mar 3;71(5):2046-55. doi: 10.1021/jo052466b.

Abstract

A strategy is outlined for construction of the fungal immunosuppressant FR901483 (1). It was possible to convert 1,4-cyclohexanedione monoethylene ketal in five simple steps to iodoacetamide ketone 10, which was cyclized in good yield to the key bridged keto lactam 11 containing the A/B 2-azabicyclo[3.3.1]nonane ring system of the natural product. This intermediate could be transformed to N-Boc lactam 16, whose derived enolate underwent stereoselective hydroxylation with the Davis oxaziridine to produce alcohol 17 having the desired C-2 configuration. Compound 17 was then converted in three steps to alkoxy carbamate 20. The N-acyliminium ion derived from intermediate 20 could be alkylated in good overall yield with p-methoxybenzylmagnesium chloride to afford a 5:4 mixture of the desired PMB product 21 and the epimer 23. In an attempt to improve the stereoselectivity in this alkylation, the inverted C-4 protected alcohol N-Boc lactam 33 was prepared and its enolate was hydroxylated. Inexplicably, the product of this reaction was the undesired equatorial alcohol 34. Some model systems were investigated toward annulation of the C-ring of the natural product. It was found that homoallylic amine 40 could be cyclized with PhSCl in the presence of silica gel to generate the desired 5-endo tetracyclic product 42 in moderate yield. This cyclization protocol was also successfully applied to the actual FR901483 system 22, leading to the requisite tricycle 43.

摘要

概述了一种构建真菌免疫抑制剂FR901483(1)的策略。通过五个简单步骤可将1,4 - 环己二酮单乙烯缩酮转化为碘乙酰胺酮10,其以良好产率环化生成关键的桥连酮内酰胺11,该内酰胺含有天然产物的A/B 2 - 氮杂双环[3.3.1]壬烷环系。该中间体可转化为N - Boc内酰胺16,其衍生的烯醇盐与戴维斯恶唑烷进行立体选择性羟基化反应,生成具有所需C - 2构型的醇17。然后化合物17经三步转化为烷氧基氨基甲酸酯20。由中间体20衍生的N - 酰基亚胺离子与对甲氧基苄基氯化镁进行烷基化反应,总产率良好,得到所需的PMB产物21和差向异构体23的5:4混合物。为了提高该烷基化反应的立体选择性,制备了构型翻转的C - 4保护醇N - Boc内酰胺33并对其烯醇盐进行羟基化反应。令人费解的是,该反应的产物是不需要的平伏醇34。研究了一些用于天然产物C环环合的模型体系。发现高烯丙基胺40在硅胶存在下可与PhSCl环化,以中等产率生成所需的5 - 内型四环产物42。该环化方案也成功应用于实际的FR901483体系22,得到所需的三环化合物43。

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J Am Chem Soc. 2001 Aug 8;123(31):7534-8. doi: 10.1021/ja016030z.
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