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Catalyst-Controlled Regiodivergence in Rearrangements of Indole-Based Onium Ylides.


ABSTRACT: We have developed catalyst-controlled regiodivergent rearrangements of onium-ylides derived from indole substrates. Oxonium ylides formed in situ from substituted indoles selectively undergo [2,3]- and [1,2]-rearrangements in the presence of a rhodium and a copper catalyst, respectively. The combined experimental and density functional theory (DFT) computational studies indicate divergent mechanistic pathways involving a metal-free ylide in the rhodium catalyzed reaction favoring [2,3]-rearrangement, and a metal-coordinated ion-pair in the copper catalyzed [1,2]-rearrangement that recombines in the solvent-cage. The application of our methodology was demonstrated in the first total synthesis of the indole alkaloid (±)-sorazolon B, which enabled the stereochemical reassignment of the natural product. Further functional group transformations of the rearrangement products to generate valuable synthetic intermediates were also demonstrated.

SUBMITTER: Nair VN 

PROVIDER: S-EPMC8650141 | biostudies-literature | 2021 Jun

REPOSITORIES: biostudies-literature

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Catalyst-Controlled Regiodivergence in Rearrangements of Indole-Based Onium Ylides.

Nair Vaishnavi N VN   Kojasoy Volga V   Laconsay Croix J CJ   Kong Wang Yeuk WY   Tantillo Dean J DJ   Tambar Uttam K UK  

Journal of the American Chemical Society 20210614 24


We have developed catalyst-controlled regiodivergent rearrangements of onium-ylides derived from indole substrates. Oxonium ylides formed <i>in situ</i> from substituted indoles selectively undergo [2,3]- and [1,2]-rearrangements in the presence of a rhodium and a copper catalyst, respectively. The combined experimental and density functional theory (DFT) computational studies indicate divergent mechanistic pathways involving a metal-free ylide in the rhodium catalyzed reaction favoring [2,3]-re  ...[more]

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