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Published on: November 9, 2019
Convergent Total Synthesis of (-)-Methyl Gummiferolate Enabled by Pattern Recognition and Radical Cyclization
Weizhao Zhao1, Jingsong Zhen1, Mingji Dai1,2
1Department of Chemistry, Emory University, Atlanta, Georgia30322, United States.
Abstract:
We report herein an enantioselective total synthesis of (-)-methyl gummiferolate, a complex diterpene natural product with a tetracyclic ent-atisane core including a bicyclo[2.2.2]octane subunit and three all-carbon quaternary centers. Gummiferolic acid has demonstrated potent plant growth-regulatory activity similar or superior to gibberellic acid. Using pattern recognition analysis, the tetracyclic ent-atisane core of (-)-methyl gummiferolate was retrosynthetically traced back to chiral pool molecule (S)-perillaldehyde and a six-membered ring containing starting material which can be accessed using an enantioselective Diels-Alder reaction with the Rawal diene. Our forward synthesis features a substrate-controlled stereoselective MHAT-initiated Baran reductive olefin cross coupling (BROC), a powerful radical cyclization approach, to close the six-membered B ring and an intramolecular alkylation to build the bicyclo[2.2.2]octane subunit. The BROC precursor was assembled in a convergent manner using a 1,2-addition of an alkyl lithium to a Weinreb amide derived from (S)-perillaldehyde. The alkyl lithium precursor was prepared from a known cyclohexenone (12) using key steps including CBS reduction, 2,3-Wittig-Still rearrangement, and Appel iodination. Overall, (-)-methyl gummiferolate was prepared in 18 steps from 12.
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