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新型微丝破坏代谢物(-)-微腕骨内酯的全合成。

Total synthesis of (-)-microcarpalide, a novel microfilament disrupting metabolite.

作者信息

Davoli Paolo, Spaggiari Alberto, Castagnetti Luca, Prati Fabio

机构信息

Dipartimento di Chimica, Università di Modena e Reggio Emilia, via Campi 183, I-41100 Modena, Italy.

出版信息

Org Biomol Chem. 2004 Jan 7;2(1):38-47. doi: 10.1039/b308709c. Epub 2003 Nov 6.

Abstract

The stereoselective total synthesis of (-)-microcarpalide, a recently discovered 10-membered lactone of fungal origin displaying a remarkable disrupting action on actin microfilaments, was accomplished by using ring-closing metathesis (RCM) as the key step for the formation of the medium-sized ring. The diene ester required for the macrocyclization reaction was assembled via DCC-mediated esterification of two suitable partners, each bearing a terminal alkene group. The alcohol fragment was synthesized from n-bromohexane through a seven-step sequence entailing two consecutive stereoselective homologations of chiral boronic esters as strategic transformations for the sequential insertion of the two stereocentres with the final S absolute configuration, using (+)-pinanediol as the chiral director; final elaboration to the desired C(11) framework envisaged treatment with an allyl Grignard reagent and oxidative cleavage of the boronic scaffold. In contrast, the acidic fragment was prepared in ten steps from d-tartaric acid, whose C(4) backbone was elongated to the required C(7) skeleton by means of two distinct Swern-Wittig oxidation-homologation sequences.

摘要

(-)-微腕菌素是一种最近发现的源自真菌的10元内酯,对肌动蛋白微丝具有显著的破坏作用。通过使用关环复分解反应(RCM)作为形成中环的关键步骤,完成了(-)-微腕菌素的立体选择性全合成。大环化反应所需的二烯酯是通过DCC介导的两个合适底物的酯化反应组装而成的,每个底物都带有一个末端烯烃基团。醇片段由正溴己烷经七步合成,其中包括两步连续的手性硼酸酯立体选择性同系化反应,这是作为两个立体中心顺序插入的关键转化步骤,最终得到S绝对构型,使用(+)-蒎烷二醇作为手性导向剂;最终将其转化为所需的C(11)骨架,设想用烯丙基格氏试剂处理并氧化裂解硼酸支架。相比之下,酸性片段由d-酒石酸经十步合成,其C(4)主链通过两个不同的Swern-Wittig氧化-同系化序列延长至所需的C(7)骨架。

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