Recent Advances in Quinone Methide Chemistry for Protein-Proximity Capturing

You F. Gan,Yuan Y. Li,Xiao Q. Chen, Yu Y. Guo,Rui Wang

SYNTHESIS-STUTTGART(2023)

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摘要
Here we summarize the most recent findings in the chemical-, photo-, or enzyme-triggered generation of nitrogen and oxygen anions leading to the formation of quinone methide intermediates (QMIs). This short review is divided into two categories: generation of nitrogen and oxygen anions. Based on quinone methide intermediates (QMIs), proximate capture of a wide range of proteins has been widely determined and studied. Generally, the triggers include, photoirradiation using 365/254 nm UV light, small molecules (ROS/TBAF/s-tetra-zine), metal catalysis (iridium catalysis), and enzymes (NQO1/beta-galac-tosidase). New directions including far-red light, heat, force, microwave, and more practical approaches are explored and illustrated. 1 Introduction 2 Generation of the Nitrogen Anion 3 Generation of the Oxygen Anion 4 Conclusion
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关键词
quinone methide chemistry,reactive oxygen species,boronic acid,photoirradiation,NAD(P)H quinone dehydrogenase 1,beta-galactosidase,protein-protein interactions
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