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网枝树素B的全合成

Total synthesis of dictyodendrin B.

作者信息

Fürstner Alois, Domostoj Mathias M, Scheiper Bodo

机构信息

Max-Planck-Institut für Kohlenforschung, D-45470 Mülheim/Ruhr, Germany.

出版信息

J Am Chem Soc. 2005 Aug 24;127(33):11620-1. doi: 10.1021/ja0541175.

Abstract

A concise total synthesis of dictyodendrin B (1) is reported, a scarce marine alkaloid endowed with promising telomerase inhibitory activity. Key steps of the chosen route are a reductive cyclization of ketoamide 11 to indole 12 mediated by low-valent titanium (from TiCl3 and KC8) followed by a photochemical 6pi-electrocyclization, which was performed in the presence of Pd/C and nitrobenzene to effect concomitant dehydrogenation/aromatization of the product initially formed. Regioselective bromination of the resulting pyrrolocarbazole 13 followed by lithium/bromine exchange and quenching of the resulting organolithium species with p-methoxybenzaldehyde installed the side chain at C2. Oxidation of the benzylic alcohol 15 thus obtained to ketone 17 was best achieved with catalytic amounts of tetra-n-propylammonium perruthenate (TPAP) and N-methylmorpholine-N-oxide (NMO) in dilute CH2Cl2 solution to avoid the formation of undue amounts of the unsymmetrical dimer 16. Ketone 17 was elaborated into the natural product by selective cleavage of the isopropyl ether with BCl3, introduction of the sulfate moiety with the aid of trichloroethyl chlorosulfuric acid ester, deprotection of all lateral methyl ether groups, and final reductive cleavage of the trichloroethyl ester moiety. The spectroscopic data of synthetic dictyodendrin B thus formed matched those of an authentic sample in all regards. Moreover, it was shown that global deprotection of the peripheral -OH groups in pyrrolo[2,3-c]carbazole 13 is accompanied by spontaneous air-oxidation to form the quinone core of dictyodendrin C.

摘要

报道了一种简洁的地枝菌素B(1)的全合成方法,地枝菌素B是一种稀有的海洋生物碱,具有有前景的端粒酶抑制活性。所选路线的关键步骤是低价钛(由TiCl3和KC8生成)介导的酮酰胺11还原环化生成吲哚12,随后进行光化学6π-电环化反应,该反应在Pd/C和硝基苯存在下进行,以使最初形成的产物同时发生脱氢/芳构化。对所得吡咯并咔唑13进行区域选择性溴化,然后进行锂/溴交换,并用对甲氧基苯甲醛淬灭所得有机锂物种,从而在C2位安装侧链。将由此得到的苄醇15氧化为酮17的最佳方法是在稀CH2Cl2溶液中使用催化量的四正丙基铵高钌酸盐(TPAP)和N-甲基吗啉-N-氧化物(NMO),以避免形成过量的不对称二聚体16。通过用BCl3选择性裂解异丙基醚、借助三氯乙基氯硫酸酯引入硫酸部分、脱除所有侧链甲基醚基团以及最后还原裂解三氯乙基酯部分,将酮17转化为天然产物。如此形成的合成地枝菌素B的光谱数据在所有方面均与真实样品的数据相符。此外,研究表明,吡咯并[2,3-c]咔唑13中周边-OH基团的整体脱保护伴随着自发的空气氧化,形成地枝菌素C的醌核。

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