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具有口服活性的胰岛素模拟物去甲基asterriquinone B1和去甲基asterriquinone A1的全合成。

Total syntheses of demethylasterriquinone B1, an orally active insulin mimetic, and demethylasterriquinone A1.

作者信息

Pirrung Michael C, Li Zhitao, Park Kaapjoo, Zhu Jin

机构信息

Department of Chemistry, Levine Science Research Center, Duke University, Durham, North Carolina 27708-0317, USA.

出版信息

J Org Chem. 2002 Nov 15;67(23):7919-26. doi: 10.1021/jo020182a.

DOI:10.1021/jo020182a
PMID:12423119
Abstract

Two total syntheses of the unsymmetrical bis-indolylquinone natural product demethylasterriquinone B1 (also known as L-783,281) have been accomplished. The first exploits a known base-promoted condensation of indoles with bromanil, which stops at monoaddition using the sterically hindered 2-isoprenylindole. This permits addition of the second indole, 7-prenylindole, which gives both meta- and para-substituted bis-indolylquinone products. This regiochemical control problem was solved by extension of a method we recently developed for acid-promoted addition of indoles to 2,5-dichlorobenzoquinone. Under our original mineral acid conditions, reaction of 2-isoprenylindole with dichlorobenzoquinone fails, but it succeeds with 3-bromo-2,5-dichlorobenzoquinone using acetic acid as the promoter. The regiochemistry established in such selectively bromine-substituted quinones can be exploited in Stille couplings. As a model system, the synthesis of demethylasterriquinone A1 was accomplished using as the key step a Stille coupling of a 2,5-dibromobenzoquinone with an (N-isoprenylindol-3-yl)tin, producing the para-substituted bis-indolylquinone exclusively. Use of a (7-prenylindole)tin in coupling with a bromo-2,5-dichloro-4-indolylbenzoquinone gives the demethylasterriquinone B1 precursor. The dihaloquinone products of these indole/quinone coupling processes can be hydrolyzed to the dihydroxyquinone natural products. Demethylasterriquinone B1 is of high recent interest as a small molecule insulin mimetic with oral anti-diabetic activity in mice.

摘要

不对称双吲哚醌天然产物去甲基asterriquinone B1(也称为L-783,281)的两种全合成已经完成。第一种方法利用了一种已知的吲哚与四溴对苯醌的碱促进缩合反应,使用空间位阻较大的2-异戊烯基吲哚时反应停留在单加成阶段。这使得可以加入第二个吲哚,即7-异戊烯基吲哚,从而得到间位和对位取代的双吲哚醌产物。我们通过扩展最近开发的一种方法解决了这个区域化学控制问题,该方法用于酸促进吲哚与2,5-二氯苯醌的加成反应。在我们原来的无机酸条件下,2-异戊烯基吲哚与二氯苯醌的反应失败,但使用乙酸作为促进剂时,与3-溴-2,5-二氯苯醌的反应成功。在这种选择性溴取代的醌中建立的区域化学可以用于施蒂勒偶联反应。作为一个模型体系,去甲基asterriquinone A1的合成以2,5-二溴苯醌与(N-异戊烯基吲哚-3-基)锡的施蒂勒偶联反应为关键步骤,专一性地生成对位取代的双吲哚醌。使用(7-异戊烯基吲哚)锡与溴-2,5-二氯-4-吲哚基苯醌偶联得到去甲基asterriquinone B1的前体。这些吲哚/醌偶联过程的二卤代醌产物可以水解为二羟基醌天然产物。去甲基asterriquinone B1作为一种在小鼠中具有口服抗糖尿病活性的小分子胰岛素模拟物,最近备受关注。

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