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Spatial Localization of Two Enzymes at Pickering Emulsion Droplet Interfaces for Cascade Reactions.

Ke LiHoubing ZouRammile EttelaieJingxia ZhangHengquan Yang
Published in: Angewandte Chemie (International ed. in English) (2023)
Developing biocatalytic cascades in abiological conditions is of utmost significance, but such processes often suffer from low reaction efficiency because of incompatible reaction environments and suppressed intermediate transportation. Herein we report a new type of biocatalytic cascade by localizing two different enzymes separately in the outer and inner interfacial layers of Pickering emulsion droplets. This versatile approach enables the localization of two enzymes in their preferred reaction microenvironments and simultaneously in nanoscale proximity of each other. The thus-designed interfacial biocatalytic cascades show outstanding catalytic efficiency in alkene epoxidation and thioether oxidation with in situ generation of hydrogen peroxide under mild conditions, 6.9-13.6 times higher than the catalytic efficiency of the free enzymes in solution and their multi-enzymatic counterparts. The remarkable interfacial effect of Pickering droplets was found to be responsible for the significantly enhanced cascading efficiency.
Keyphrases
  • hydrogen peroxide
  • electron transfer
  • ionic liquid
  • nitric oxide
  • molecular dynamics simulations
  • perovskite solar cells
  • single cell
  • high throughput
  • atomic force microscopy
  • single molecule