Late-stage diversification of indole skeletons through nitrogen atom insertion
Reisenbauer J, Green O, Franchino A, Finkelstein P, Morandi B. 2022. Late-stage diversification of indole skeletons through nitrogen atom insertion. Science. 377(6610), 1104–1109.
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Author
Reisenbauer, Julia C.ISTA;
Green, Ori;
Franchino, Allegra;
Finkelstein, Patrick;
Morandi, Bill
Abstract
Compared with peripheral late-stage transformations mainly focusing on carbon–hydrogen functionalizations, reliable strategies to directly edit the core skeleton of pharmaceutical lead compounds still remain scarce despite the recent flurry of activity in this area. Herein, we report the skeletal editing of indoles through nitrogen atom insertion, accessing the corresponding quinazoline or quinoxaline bioisosteres by trapping of an electrophilic nitrene species generated from ammonium carbamate and hypervalent iodine. This reactivity relies on the strategic use of a silyl group as a labile protecting group that can facilitate subsequent product release. The utility of this highly functional group-compatible methodology in the context of late-stage skeletal editing of several commercial drugs is demonstrated.
Publishing Year
Date Published
2022-09-01
Journal Title
Science
Publisher
American Association for the Advancement of Science
Volume
377
Issue
6610
Page
1104-1109
ISSN
eISSN
IST-REx-ID
Cite this
Reisenbauer J, Green O, Franchino A, Finkelstein P, Morandi B. Late-stage diversification of indole skeletons through nitrogen atom insertion. Science. 2022;377(6610):1104-1109. doi:10.1126/science.add1383
Reisenbauer, J., Green, O., Franchino, A., Finkelstein, P., & Morandi, B. (2022). Late-stage diversification of indole skeletons through nitrogen atom insertion. Science. American Association for the Advancement of Science. https://doi.org/10.1126/science.add1383
Reisenbauer, Julia, Ori Green, Allegra Franchino, Patrick Finkelstein, and Bill Morandi. “Late-Stage Diversification of Indole Skeletons through Nitrogen Atom Insertion.” Science. American Association for the Advancement of Science, 2022. https://doi.org/10.1126/science.add1383.
J. Reisenbauer, O. Green, A. Franchino, P. Finkelstein, and B. Morandi, “Late-stage diversification of indole skeletons through nitrogen atom insertion,” Science, vol. 377, no. 6610. American Association for the Advancement of Science, pp. 1104–1109, 2022.
Reisenbauer J, Green O, Franchino A, Finkelstein P, Morandi B. 2022. Late-stage diversification of indole skeletons through nitrogen atom insertion. Science. 377(6610), 1104–1109.
Reisenbauer, Julia, et al. “Late-Stage Diversification of Indole Skeletons through Nitrogen Atom Insertion.” Science, vol. 377, no. 6610, American Association for the Advancement of Science, 2022, pp. 1104–09, doi:10.1126/science.add1383.
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