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Evolution of a Unified, Stereodivergent Approach to the Synthesis of Communesin F and Perophoramidine
Author(s) -
SeoJung Han,
Florian Vogt,
Jeremy A. May,
Shyam Krishnan,
Michele Gatti,
Scott C. Virgil,
Brian M. Stoltz
Publication year - 2014
Publication title -
the journal of organic chemistry
Language(s) - English
Resource type - Journals
eISSN - 1520-6904
pISSN - 0022-3263
DOI - 10.1021/jo502534g
Subject(s) - chemistry , oxindole , propellane , diastereomer , alkylation , stereochemistry , tsuji–trost reaction , quaternary carbon , stereoselectivity , vicinal , total synthesis , enantioselective synthesis , combinatorial chemistry , bicyclic molecule , organic chemistry , catalysis
Expedient synthetic approaches to the highly functionalized polycyclic alkaloids communesin F and perophoramidine are described using a unified approach featuring a key decarboxylative allylic alkylation to access a crucial and highly congested 3,3-disubstituted oxindole. Described are two distinct, stereoselective alkylations that produce structures in divergent diastereomeric series possessing the critical vicinal all-carbon quaternary centers needed for each synthesis. Synthetic studies toward these challenging core structures have revealed a number of unanticipated modes of reactivity inherent to these complex alkaloid scaffolds. Additionally, several novel and interesting intermediates en route to the target natural products, such as an intriguing propellane hexacyclic oxindole encountered in the communesin F sequence, are disclosed. Indeed, such unanticipated structures may prove to be convenient strategic intermediates in future syntheses.

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