Fereyduni Ehsan, Lahtigui Ouidad, Sanders Jacob N, Tomiczek Breanna M, Mannchen Michael D, Yu Roland A, Houk K N, Grenning Alexander J
Department of Chemistry, University of Florida, P.O. Box 117200, Gainesville, Florida 32611, United States.
Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.
J Org Chem. 2021 Feb 5;86(3):2632-2643. doi: 10.1021/acs.joc.0c02690. Epub 2021 Jan 21.
Systematic evaluation of 1,5-dienes bearing 3,3-electron-withdrawing groups and 4-methylation results in the discovery of a Cope rearrangement for Meldrum's acid-containing substrates that have unexpectedly favorable kinetic and thermodynamic profiles. The protocol is quite general due to a concise and convergent synthesis from abundant starting materials. Furthermore, products with an embedded Meldrum's acid moiety are prepared, which, in turn, can yield complex amides under neutral conditions. We have now expanded the scope of the reductive Cope rearrangement, which, via chemoselective reduction, can promote thermodynamically unfavorable [3,3] sigmatropic rearrangements of 3,3-dicyano-1,5-dienes to form reduced Cope rearrangement products. The Cope rearrangement is found to be stereospecific and can yield enantioenriched building blocks when chiral, nonracemic 1,3-disubstituted allylic electrophiles are utilized. We expand further the use of Cope rearrangements for the synthesis of highly valuable building blocks for complex- and drug-like molecular synthesis.
对带有3,3-吸电子基团和4-甲基化的1,5-二烯进行系统评估,结果发现含丙二酸亚异丙酯的底物会发生Cope重排,其具有出乎意料的良好动力学和热力学特征。由于该方案能从丰富的起始原料进行简洁且汇聚式的合成,所以具有相当的通用性。此外,还制备了含有嵌入丙二酸亚异丙酯部分的产物,这些产物进而能在中性条件下生成复杂的酰胺。我们现在扩展了还原Cope重排的范围,通过化学选择性还原,它能促进3,3-二氰基-1,5-二烯的热力学不利的[3,3]σ迁移重排,以形成还原的Cope重排产物。发现Cope重排具有立体专一性,当使用手性、非外消旋的1,3-二取代烯丙基亲电试剂时,可产生对映体富集的结构单元。我们进一步扩展了Cope重排在合成用于复杂和类药物分子合成的高价值结构单元方面的应用。