Disparate Catalytic Scaffolds for Atroposelective Cyclodehydration

  • Yongseok Kwon
  • , Junqi Li
  • , Jolene P. Reid
  • , Jennifer M. Crawford
  • , Roxane Jacob
  • , Matthew S. Sigman
  • , F. Dean Toste
  • , Scott J. Miller

Research output: Contribution to journalArticlepeer-review

Abstract

Catalysts that control stereochemistry are prized tools in chemical synthesis. When an effective catalyst is found, it is often explored for other types of reactions, frequently under the auspices of different mechanisms. As successes mount, a unique catalyst scaffold may become viewed as "privileged". However, the mechanistic hallmarks of privileged catalysts are not easily enumerated or readily generalized to genuinely different classes of reactions or substrates. We explored the concept of scaffold uniqueness with two catalyst types for an unusual atropisomer-selective cyclodehydration: (a) C2-symmetric chiral phosphoric acids and (b) phosphothreonine-embedded, peptidic phosphoric acids. Pragmatically, both catalyst scaffolds proved fertile for enantioselective/atroposelective cyclodehydrations. Mechanistic studies revealed that the determinants of often equivalent and high atroposelectivity are different for the two catalyst classes. A data-descriptive classification of these asymmetric catalysts reveals an increasingly broad set of catalyst chemotypes, operating with different mechanistic features, that creates new opportunities for broad and complementary application of catalyst scaffolds in diverse substrate space.

Original languageEnglish
Pages (from-to)6698-6705
Number of pages8
JournalJournal of the American Chemical Society
Volume141
Issue number16
DOIs
StatePublished - 24 Apr 2019
Externally publishedYes

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