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Strain-release amination.

Authors :
Gianatassio, Ryan
Lopchuk, Justin M.
Jie Wang
Chung-Mao Pan
Malins, Lara R.
Prieto, Liher
Brandt, Thomas A.
Collins, Michael R.
Gallego, Gary M.
Sach, Neal W.
Spangler, Jillian E.
Huichin Zhu
Jinjiang Zhu
Baran, Phil S.
Source :
Science. 1/15/2016, Vol. 351 Issue 6270, p241-246. 6p.
Publication Year :
2016

Abstract

To optimize drug candidates, modern medicinal chemists are increasingly turning to an unconventional structural motif: small, strained ring systems. However, the difficulty of introducing substituents such as bicyclo[1.1.1]pentanes, azetidines, or cyclobutanes often outweighs the challenge of synthesizing the parent scaffold itself. Thus, there is an urgent need for general methods to rapidly and directly append such groups onto core scaffolds. Here we report a general strategy to harness the embedded potential energy of effectively spring-loaded C-C and C-N bonds with the most oft-encountered nucleophiles in pharmaceutical chemistry, amines. Strain-release amination can diversify a range of substrates with a multitude of desirable bioisosteres at both the early and late stages of a synthesis. The technique has also been applied to peptide labeling and bioconjugation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00368075
Volume :
351
Issue :
6270
Database :
Academic Search Index
Journal :
Science
Publication Type :
Academic Journal
Accession number :
112343840
Full Text :
https://doi.org/10.1126/science.aad6252