Cargando…

The Domestication of ortho-Quinone Methides

[Image: see text] An ortho-quinone methide (o-QM) is a highly reactive chemical motif harnessed by nature for a variety of purposes. Given its extraordinary reactivity and biological importance, it is surprising how few applications within organic synthesis exist. We speculate that their widespread...

Descripción completa

Detalles Bibliográficos
Autores principales: Bai, Wen-Ju, David, Jonathan G., Feng, Zhen-Gao, Weaver, Marisa G., Wu, Kun-Liang, Pettus, Thomas R. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4270411/
https://www.ncbi.nlm.nih.gov/pubmed/25469551
http://dx.doi.org/10.1021/ar500330x
_version_ 1782349491122208768
author Bai, Wen-Ju
David, Jonathan G.
Feng, Zhen-Gao
Weaver, Marisa G.
Wu, Kun-Liang
Pettus, Thomas R. R.
author_facet Bai, Wen-Ju
David, Jonathan G.
Feng, Zhen-Gao
Weaver, Marisa G.
Wu, Kun-Liang
Pettus, Thomas R. R.
author_sort Bai, Wen-Ju
collection PubMed
description [Image: see text] An ortho-quinone methide (o-QM) is a highly reactive chemical motif harnessed by nature for a variety of purposes. Given its extraordinary reactivity and biological importance, it is surprising how few applications within organic synthesis exist. We speculate that their widespread use has been slowed by the complications that surround the preparation of their precursors, the harsh generation methods, and the omission of this stratagem from computer databases due to its ephemeral nature. About a decade ago, we discovered a mild anionic triggering procedure to generate transitory o-QMs at low temperature from readily available salicylaldehydes, particularly OBoc derivatives. This novel reaction cascade included both the o-QM formation and the subsequent consumption reaction. The overall transformation was initiated by the addition of the organometallic reagent, usually a Grignard reagent, which resulted in the formation of a benzyloxy alkoxide. Boc migration from the neighboring phenol produced a magnesium phenoxide that we supposed underwent β-elimination of the transferred Boc residue to form an o-QM for immediate further reactions. Moreover, the cascade proved controllable through careful manipulation of metallic and temperature levers so that it could be paused, stopped, or restarted at various intermediates and stages. This new level of domestication enabled us to deploy o-QMs for the first time in a range of applications including diastereocontrolled reactions. This sequence ultimately could be performed in either multipot or single pot processes. The subsequent reaction of the fleeting o-QM intermediates included the 1,4-conjugate additions that led to unbranched or branched ortho-alkyl substituted phenols and Diels–Alder reactions that provided 4-unsubstituted or 4-substituted benzopyrans and chroman ketals. The latter cycloadducts were obtained for the first time with outstanding diastereocontrol. In addition, the steric effects of the newly created stereocenters in subsequent reactions of chroman ketals and acetals were studied and proved predictable. Through the use of a chiral auxiliary, Diels–Alder products were deployed in numerous enantioselective reactions including several complex natural products syntheses. In this Account, we summarize our efforts, which we hope have contributed to the synthetic renaissance for this venerable species.
format Online
Article
Text
id pubmed-4270411
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-42704112015-12-03 The Domestication of ortho-Quinone Methides Bai, Wen-Ju David, Jonathan G. Feng, Zhen-Gao Weaver, Marisa G. Wu, Kun-Liang Pettus, Thomas R. R. Acc Chem Res [Image: see text] An ortho-quinone methide (o-QM) is a highly reactive chemical motif harnessed by nature for a variety of purposes. Given its extraordinary reactivity and biological importance, it is surprising how few applications within organic synthesis exist. We speculate that their widespread use has been slowed by the complications that surround the preparation of their precursors, the harsh generation methods, and the omission of this stratagem from computer databases due to its ephemeral nature. About a decade ago, we discovered a mild anionic triggering procedure to generate transitory o-QMs at low temperature from readily available salicylaldehydes, particularly OBoc derivatives. This novel reaction cascade included both the o-QM formation and the subsequent consumption reaction. The overall transformation was initiated by the addition of the organometallic reagent, usually a Grignard reagent, which resulted in the formation of a benzyloxy alkoxide. Boc migration from the neighboring phenol produced a magnesium phenoxide that we supposed underwent β-elimination of the transferred Boc residue to form an o-QM for immediate further reactions. Moreover, the cascade proved controllable through careful manipulation of metallic and temperature levers so that it could be paused, stopped, or restarted at various intermediates and stages. This new level of domestication enabled us to deploy o-QMs for the first time in a range of applications including diastereocontrolled reactions. This sequence ultimately could be performed in either multipot or single pot processes. The subsequent reaction of the fleeting o-QM intermediates included the 1,4-conjugate additions that led to unbranched or branched ortho-alkyl substituted phenols and Diels–Alder reactions that provided 4-unsubstituted or 4-substituted benzopyrans and chroman ketals. The latter cycloadducts were obtained for the first time with outstanding diastereocontrol. In addition, the steric effects of the newly created stereocenters in subsequent reactions of chroman ketals and acetals were studied and proved predictable. Through the use of a chiral auxiliary, Diels–Alder products were deployed in numerous enantioselective reactions including several complex natural products syntheses. In this Account, we summarize our efforts, which we hope have contributed to the synthetic renaissance for this venerable species. American Chemical Society 2014-12-03 2014-12-16 /pmc/articles/PMC4270411/ /pubmed/25469551 http://dx.doi.org/10.1021/ar500330x Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Bai, Wen-Ju
David, Jonathan G.
Feng, Zhen-Gao
Weaver, Marisa G.
Wu, Kun-Liang
Pettus, Thomas R. R.
The Domestication of ortho-Quinone Methides
title The Domestication of ortho-Quinone Methides
title_full The Domestication of ortho-Quinone Methides
title_fullStr The Domestication of ortho-Quinone Methides
title_full_unstemmed The Domestication of ortho-Quinone Methides
title_short The Domestication of ortho-Quinone Methides
title_sort domestication of ortho-quinone methides
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4270411/
https://www.ncbi.nlm.nih.gov/pubmed/25469551
http://dx.doi.org/10.1021/ar500330x
work_keys_str_mv AT baiwenju thedomesticationoforthoquinonemethides
AT davidjonathang thedomesticationoforthoquinonemethides
AT fengzhengao thedomesticationoforthoquinonemethides
AT weavermarisag thedomesticationoforthoquinonemethides
AT wukunliang thedomesticationoforthoquinonemethides
AT pettusthomasrr thedomesticationoforthoquinonemethides
AT baiwenju domesticationoforthoquinonemethides
AT davidjonathang domesticationoforthoquinonemethides
AT fengzhengao domesticationoforthoquinonemethides
AT weavermarisag domesticationoforthoquinonemethides
AT wukunliang domesticationoforthoquinonemethides
AT pettusthomasrr domesticationoforthoquinonemethides