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Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups

In vivo compatible reactions have a broad range of possible applications in chemical biology and the pharmaceutical sciences. Here we report tetrazines that can be removed by exposure to isonitriles under very mild conditions. Tetrazylmethyl derivatives are easily accessible protecting groups for am...

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Autores principales: Tu, Julian, Svatunek, Dennis, Parvez, Saba, Eckvahl, Hannah J., Xu, Minghao, Peterson, Randall T., Houk, K. N., Franzini, Raphael M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7012038/
https://www.ncbi.nlm.nih.gov/pubmed/32110368
http://dx.doi.org/10.1039/c9sc04649f
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author Tu, Julian
Svatunek, Dennis
Parvez, Saba
Eckvahl, Hannah J.
Xu, Minghao
Peterson, Randall T.
Houk, K. N.
Franzini, Raphael M.
author_facet Tu, Julian
Svatunek, Dennis
Parvez, Saba
Eckvahl, Hannah J.
Xu, Minghao
Peterson, Randall T.
Houk, K. N.
Franzini, Raphael M.
author_sort Tu, Julian
collection PubMed
description In vivo compatible reactions have a broad range of possible applications in chemical biology and the pharmaceutical sciences. Here we report tetrazines that can be removed by exposure to isonitriles under very mild conditions. Tetrazylmethyl derivatives are easily accessible protecting groups for amines and phenols. The isonitrile-induced removal is rapid and near-quantitative. Intriguingly, the deprotection is especially effective with (trimethylsilyl)methyl isocyanide, and serum albumin can catalyze the elimination under physiological conditions. NMR and computational studies revealed that an imine-tautomerization step is often rate limiting, and the unexpected cleavage of the Si–C bond accelerates this step in the case with (trimethylsilyl)methyl isocyanide. Tetrazylmethyl-removal is compatible with use on biomacromolecules, in cellular environments, and in living organisms as demonstrated by cytotoxicity experiments and fluorophore-release studies on proteins and in zebrafish embryos. By combining tetrazylmethyl derivatives with previously reported tetrazine-responsive 3-isocyanopropyl groups, it was possible to liberate two fluorophores in vertebrates from a single bioorthogonal reaction. This chemistry will open new opportunities towards applications involving multiplexed release schemes and is a valuable asset to the growing toolbox of bioorthogonal dissociative reactions.
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spelling pubmed-70120382020-02-27 Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups Tu, Julian Svatunek, Dennis Parvez, Saba Eckvahl, Hannah J. Xu, Minghao Peterson, Randall T. Houk, K. N. Franzini, Raphael M. Chem Sci Chemistry In vivo compatible reactions have a broad range of possible applications in chemical biology and the pharmaceutical sciences. Here we report tetrazines that can be removed by exposure to isonitriles under very mild conditions. Tetrazylmethyl derivatives are easily accessible protecting groups for amines and phenols. The isonitrile-induced removal is rapid and near-quantitative. Intriguingly, the deprotection is especially effective with (trimethylsilyl)methyl isocyanide, and serum albumin can catalyze the elimination under physiological conditions. NMR and computational studies revealed that an imine-tautomerization step is often rate limiting, and the unexpected cleavage of the Si–C bond accelerates this step in the case with (trimethylsilyl)methyl isocyanide. Tetrazylmethyl-removal is compatible with use on biomacromolecules, in cellular environments, and in living organisms as demonstrated by cytotoxicity experiments and fluorophore-release studies on proteins and in zebrafish embryos. By combining tetrazylmethyl derivatives with previously reported tetrazine-responsive 3-isocyanopropyl groups, it was possible to liberate two fluorophores in vertebrates from a single bioorthogonal reaction. This chemistry will open new opportunities towards applications involving multiplexed release schemes and is a valuable asset to the growing toolbox of bioorthogonal dissociative reactions. Royal Society of Chemistry 2019-11-05 /pmc/articles/PMC7012038/ /pubmed/32110368 http://dx.doi.org/10.1039/c9sc04649f Text en This journal is © The Royal Society of Chemistry 2020 https://creativecommons.org/licenses/by/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Tu, Julian
Svatunek, Dennis
Parvez, Saba
Eckvahl, Hannah J.
Xu, Minghao
Peterson, Randall T.
Houk, K. N.
Franzini, Raphael M.
Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title_full Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title_fullStr Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title_full_unstemmed Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title_short Isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
title_sort isonitrile-responsive and bioorthogonally removable tetrazine protecting groups
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7012038/
https://www.ncbi.nlm.nih.gov/pubmed/32110368
http://dx.doi.org/10.1039/c9sc04649f
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