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Asymmetric δ-Lactam Synthesis with a Monomeric Streptavidin Artificial Metalloenzyme.

Isra S HassanAngeline N TaMichael W DannemanNatthawat SemakulMatthew BurnsCorey H BaschVanessa N DipponBrian R McNaughtonTomislav Rovis
Published in: Journal of the American Chemical Society (2019)
Reliable design of artificial metalloenzymes (ArMs) to access transformations not observed in nature remains a long-standing and important challenge. We report that a monomeric streptavidin (mSav) Rh(III) ArM permits asymmetric synthesis of α,β-unsaturated-δ-lactams via a tandem C-H activation and [4+2] annulation reaction. These products are readily derivatized to enantioenriched piperidines, the most common N-heterocycle found in FDA approved pharmaceuticals. Desired δ-lactams are achieved in yields as high as 99% and enantiomeric excess of 97% under aqueous conditions at room temperature. Embedding a Rh cyclopentadienyl (Cp*) catalyst in the active site of mSav results in improved stereocontrol and a 7-fold enhancement in reactivity relative to the isolated biotinylated Rh(III) cofactor. In addition, mSav-Rh outperforms its well-established tetrameric forms, displaying 11-33 times more reactivity.
Keyphrases
  • room temperature
  • ionic liquid
  • solid state
  • mass spectrometry
  • gram negative
  • metal organic framework
  • highly efficient
  • drug administration
  • carbon dioxide