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2-烯基-1,3-二硫杂环戊烷的阳离子环化反应:反式十氢萘的立体选择性合成。

Cationic cyclization of 2-alkenyl-1,3-dithiolanes: diastereoselective synthesis of trans-decalins.

机构信息

Université de Strasbourg, Faculté de Pharmacie UMR/CNRS 7199, Laboratoire des Systèmes Chimiques Fonctionnels, 74 route du Rhin, BP 60024, 67401 Illkirch, France.

出版信息

J Org Chem. 2011 May 6;76(9):3274-85. doi: 10.1021/jo2001116. Epub 2011 Apr 13.

Abstract

An unprecedented and highly diastereoselective 6-endo-trig cyclization of 2-alkenyl-1,3-dithiolanes has been developed yielding trans-decalins, an important scaffold present in numerous di- and triterpenes. The novelty of this 6-endo-trig cyclization stands in the stepwise mechanism involving 2-alkenyl-1,3-dithiolane, acting as a novel latent initiator. It is suggested that the thioketal opens temporarily under the influence of TMSOTf, triggering the cationic 6-endo-trig cyclization, and closes after C-C bond formation and diastereoselective protonation to terminate the process. DFT calculations confirm this mechanistic proposal and provide a rationale for the observed diastereoselectivity. The reaction tolerates a wide range of functionalities and nucleophilic partners within the substrate. We have also shown that the one-pot 6-endo-trig cyclization followed by in situ 1,3-dithiolane deprotection afford directly the corresponding ketone. This improvement allowed the achievement of the shortest total synthesis of triptophenolide and the shortest formal synthesis of triptolide.

摘要

一种前所未有的、高度非对映选择性的 2-烯基-1,3-二硫戊环的 6-endo-trig 环化反应已经被开发出来,生成了反式十氢萘,这是许多二萜和三萜中存在的重要支架。这种 6-endo-trig 环化反应的新颖之处在于涉及 2-烯基-1,3-二硫戊环的逐步反应机制,它作为一种新型的潜在引发剂。据推测,在 TMSOTf 的影响下,硫缩酮会暂时打开,引发阳离子 6-endo-trig 环化,然后在 C-C 键形成和非对映选择性质子化后关闭,从而终止反应。DFT 计算证实了这种反应机制,并为观察到的非对映选择性提供了依据。该反应可以容忍底物中广泛的官能团和亲核试剂。我们还表明,一锅法 6-endo-trig 环化反应后,通过原位 1,3-二硫戊环脱保护,可以直接得到相应的酮。这一改进使得三苯并菲内酯的最短全合成和三苯并菲内酯的最短形式合成成为可能。

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