Scaffold hopping by net photochemical carbon deletion of azaarenes

Discovery chemists routinely identify purpose-tailored molecules through an iterative structural optimization approach, but the preparation of each successive candidate in a compound series can rarely be conducted in a manner matching their thought process. This is because many of the necessary chem...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2022-04, Vol.376 (6592), p.527-532
Hauptverfasser: Woo, Jisoo, Christian, Alec H, Burgess, Samantha A, Jiang, Yuan, Mansoor, Umar Faruk, Levin, Mark D
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Sprache:eng
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Zusammenfassung:Discovery chemists routinely identify purpose-tailored molecules through an iterative structural optimization approach, but the preparation of each successive candidate in a compound series can rarely be conducted in a manner matching their thought process. This is because many of the necessary chemical transformations required to modify compound cores in a straightforward fashion are not applicable in complex contexts. We report a method that addresses one facet of this problem by allowing chemists to hop directly between chemically distinct heteroaromatic scaffolds. Specifically, we show that selective photolysis of quinoline -oxides with 390-nanometer light followed by acid-promoted rearrangement affords -acylindoles while showing broad compatibility with medicinally relevant functionality. Applications to late-stage skeletal modification of compounds of pharmaceutical interest and more complex transformations involving serial single-atom changes are demonstrated.
ISSN:0036-8075
1095-9203
1095-9203
DOI:10.1126/science.abo4282