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Bioorthogonal 4H-pyrazole "click" reagents.


ABSTRACT: 4H-Pyrazoles are emerging as useful click reagents. Fluorinating the saturated center enables 4H-pyrazoles to react rapidly as Diels-Alder dienes without a catalyst but compromises the stability of these dienes under physiological conditions. To identify more stable 4H-pyrazoles for bioorthogonal chemistry applications, we investigated the Diels-Alder reactivity and biological stability of three 4-oxo-substituted 4H-pyrazoles. We found that these dienes undergo rapid Diels-Alder reactions with endo-bicyclo[6.1.0]non-4-yne (BCN) while being much more stable to biological nucleophiles than their fluorinated counterparts. We attribute the rapid Diels-Alder reactivity of the optimal oxygen-substituted pyrazole to a combination of antiaromaticity, predistortion, and spirocyclization. Their reactivity and stability suggest that 4-oxo-4H-pyrazoles can be useful bioorthogonal reagents.

SUBMITTER: Abularrage NS 

PROVIDER: S-EPMC10088812 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Bioorthogonal 4<i>H</i>-pyrazole "click" reagents.

Abularrage Nile S NS   Levandowski Brian J BJ   Giancola JoLynn B JB   Graham Brian J BJ   Raines Ronald T RT  

Chemical communications (Cambridge, England) 20230411 30


4<i>H</i>-Pyrazoles are emerging as useful click reagents. Fluorinating the saturated center enables 4<i>H</i>-pyrazoles to react rapidly as Diels-Alder dienes without a catalyst but compromises the stability of these dienes under physiological conditions. To identify more stable 4<i>H</i>-pyrazoles for bioorthogonal chemistry applications, we investigated the Diels-Alder reactivity and biological stability of three 4-oxo-substituted 4<i>H</i>-pyrazoles. We found that these dienes undergo rapid  ...[more]

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