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Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity

[Image: see text] Driven by the ever-increasing pace of drug discovery and the need to push the boundaries of unexplored chemical space, medicinal chemists are routinely turning to unusual strained bioisosteres such as bicyclo[1.1.1]pentane, azetidine, and cyclobutane to modify their lead compounds....

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Autores principales: Lopchuk, Justin M., Fjelbye, Kasper, Kawamata, Yu, Malins, Lara R., Pan, Chung-Mao, Gianatassio, Ryan, Wang, Jie, Prieto, Liher, Bradow, James, Brandt, Thomas A., Collins, Michael R., Elleraas, Jeff, Ewanicki, Jason, Farrell, William, Fadeyi, Olugbeminiyi O., Gallego, Gary M., Mousseau, James J., Oliver, Robert, Sach, Neal W., Smith, Jason K., Spangler, Jillian E., Zhu, Huichin, Zhu, Jinjiang, Baran, Phil S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334783/
https://www.ncbi.nlm.nih.gov/pubmed/28140573
http://dx.doi.org/10.1021/jacs.6b13229
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author Lopchuk, Justin M.
Fjelbye, Kasper
Kawamata, Yu
Malins, Lara R.
Pan, Chung-Mao
Gianatassio, Ryan
Wang, Jie
Prieto, Liher
Bradow, James
Brandt, Thomas A.
Collins, Michael R.
Elleraas, Jeff
Ewanicki, Jason
Farrell, William
Fadeyi, Olugbeminiyi O.
Gallego, Gary M.
Mousseau, James J.
Oliver, Robert
Sach, Neal W.
Smith, Jason K.
Spangler, Jillian E.
Zhu, Huichin
Zhu, Jinjiang
Baran, Phil S.
author_facet Lopchuk, Justin M.
Fjelbye, Kasper
Kawamata, Yu
Malins, Lara R.
Pan, Chung-Mao
Gianatassio, Ryan
Wang, Jie
Prieto, Liher
Bradow, James
Brandt, Thomas A.
Collins, Michael R.
Elleraas, Jeff
Ewanicki, Jason
Farrell, William
Fadeyi, Olugbeminiyi O.
Gallego, Gary M.
Mousseau, James J.
Oliver, Robert
Sach, Neal W.
Smith, Jason K.
Spangler, Jillian E.
Zhu, Huichin
Zhu, Jinjiang
Baran, Phil S.
author_sort Lopchuk, Justin M.
collection PubMed
description [Image: see text] Driven by the ever-increasing pace of drug discovery and the need to push the boundaries of unexplored chemical space, medicinal chemists are routinely turning to unusual strained bioisosteres such as bicyclo[1.1.1]pentane, azetidine, and cyclobutane to modify their lead compounds. Too often, however, the difficulty of installing these fragments surpasses the challenges posed even by the construction of the parent drug scaffold. This full account describes the development and application of a general strategy where spring-loaded, strained C–C and C–N bonds react with amines to allow for the “any-stage” installation of small, strained ring systems. In addition to the functionalization of small building blocks and late-stage intermediates, the methodology has been applied to bioconjugation and peptide labeling. For the first time, the stereospecific strain-release “cyclopentylation” of amines, alcohols, thiols, carboxylic acids, and other heteroatoms is introduced. This report describes the development, synthesis, scope of reaction, bioconjugation, and synthetic comparisons of four new chiral “cyclopentylation” reagents.
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spelling pubmed-53347832017-03-06 Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity Lopchuk, Justin M. Fjelbye, Kasper Kawamata, Yu Malins, Lara R. Pan, Chung-Mao Gianatassio, Ryan Wang, Jie Prieto, Liher Bradow, James Brandt, Thomas A. Collins, Michael R. Elleraas, Jeff Ewanicki, Jason Farrell, William Fadeyi, Olugbeminiyi O. Gallego, Gary M. Mousseau, James J. Oliver, Robert Sach, Neal W. Smith, Jason K. Spangler, Jillian E. Zhu, Huichin Zhu, Jinjiang Baran, Phil S. J Am Chem Soc [Image: see text] Driven by the ever-increasing pace of drug discovery and the need to push the boundaries of unexplored chemical space, medicinal chemists are routinely turning to unusual strained bioisosteres such as bicyclo[1.1.1]pentane, azetidine, and cyclobutane to modify their lead compounds. Too often, however, the difficulty of installing these fragments surpasses the challenges posed even by the construction of the parent drug scaffold. This full account describes the development and application of a general strategy where spring-loaded, strained C–C and C–N bonds react with amines to allow for the “any-stage” installation of small, strained ring systems. In addition to the functionalization of small building blocks and late-stage intermediates, the methodology has been applied to bioconjugation and peptide labeling. For the first time, the stereospecific strain-release “cyclopentylation” of amines, alcohols, thiols, carboxylic acids, and other heteroatoms is introduced. This report describes the development, synthesis, scope of reaction, bioconjugation, and synthetic comparisons of four new chiral “cyclopentylation” reagents. American Chemical Society 2017-01-31 2017-03-01 /pmc/articles/PMC5334783/ /pubmed/28140573 http://dx.doi.org/10.1021/jacs.6b13229 Text en Copyright © 2017 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 Lopchuk, Justin M.
Fjelbye, Kasper
Kawamata, Yu
Malins, Lara R.
Pan, Chung-Mao
Gianatassio, Ryan
Wang, Jie
Prieto, Liher
Bradow, James
Brandt, Thomas A.
Collins, Michael R.
Elleraas, Jeff
Ewanicki, Jason
Farrell, William
Fadeyi, Olugbeminiyi O.
Gallego, Gary M.
Mousseau, James J.
Oliver, Robert
Sach, Neal W.
Smith, Jason K.
Spangler, Jillian E.
Zhu, Huichin
Zhu, Jinjiang
Baran, Phil S.
Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title_full Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title_fullStr Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title_full_unstemmed Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title_short Strain-Release Heteroatom Functionalization: Development, Scope, and Stereospecificity
title_sort strain-release heteroatom functionalization: development, scope, and stereospecificity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334783/
https://www.ncbi.nlm.nih.gov/pubmed/28140573
http://dx.doi.org/10.1021/jacs.6b13229
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