Construction of the tricyclo[5.3.1.01,5]undecane system by a novel tandem pinacol rearrangement-ene strategy:: A formal total synthesis of (±)-perhydrohistrionicotoxin

  • Kim, DJ
  • Shim, PJ
  • Lee, JK
  • Park, CW
  • Hong, SW
  • 외 1명
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초록

Histrionicotoxin derivatives have long been attractive targets for synthetic chemists as a result of their useful neurophysical properties, low natural abundance, and the unique structural features of the azaspiro[5.5]undecane ring system. Utilizing our tandem pinacol rearrangement-ene strategy and regiospecific Baeyer-Villiger oxidation as key steps, we have successfully synthesized an advanced synthetic intermediate, spiro[5.4]decane 4, which has previously been converted to (+/-)perhydrohistrionicotoxin (5b). Pinacol rearrangement of simple Diels-Alder derived bicyclo[2.2.2]octene system 2a, followed by an ene reaction, led to the efficient formation of the highly fuctionalized tricyclo[5.3.1.0(1,5)]undecane system 1a. This tricyclic system 1a was selectively transformed into spiro[5.4]decane system 4 via a regiospecific Baeyer-Villiger oxidation reaction. We also report the results of systematic studies of Baeyer-Villiger oxidation reactions of tricyclo[5.3.1.0(1,5)]undecanone systems to elucidate the origin of the regioselectivity of this process.

키워드

HISTRIONICOTOXINSSKELETON
제목
Construction of the tricyclo[5.3.1.01,5]undecane system by a novel tandem pinacol rearrangement-ene strategy:: A formal total synthesis of (±)-perhydrohistrionicotoxin
저자
Kim, DJShim, PJLee, JKPark, CWHong, SWKim, SH
DOI
10.1021/jo000136f
발행일
2000-08-11
유형
Article
저널명
The Journal of Organic Chemistry
65
16
페이지
4864 ~ 4870