Selenocysteinyl Electrophiles Efficiently Promote the Formation of Coumarin and Quinolinone Cores by 6-Endo-Dig Cyclization
New Journal of Chemistry 2021
Sindija Lapčinska, Pavel Arsenyan

Efficient methods have been disclosed for the construction of nitrogen and oxygen containing heterocyclic systems attached to selenocysteine or selenoglutathione. An inorganic oxidant (K2S2O8) or a mild Lewis acid (CuBr2) was employed for the generation of selanyl electrophiles that were further trapped with phenyl propiolates, methyl 2-(phenylethynyl)benzoate,N-phenyl propiolamides and 2-(phenylethynyl)benzamide thus providing the respective coumarins, isocoumarins, quinolin-2-ones and isoquinolin-2-onesvia6-endo-digcyclization. The use of visible light resulted in divergent reactivity providing triple bond addition products or spirocyclic compounds bearing selenocysteine moieties.


DOI
10.1039/d1nj02633j
Hyperlink
https://pubs.rsc.org/en/content/articlelanding/2021/NJ/D1NJ02633J

Lapčinska, S., Arsenyan, P. Selenocysteinyl Electrophiles Efficiently Promote the Formation of Coumarin and Quinolinone Cores by 6-Endo-Dig Cyclization. New Journal of Chemistry, 2021, Vol. 45, No. 36, pp.16625-16634. ISSN 1144-0546. e-ISSN 1369-9261. Available from: doi:10.1039/d1nj02633j

Publication language
English (en)
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