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Expanding the Promiscuity of a Copper-Dependent Oxidase for Enantioselective Cross-Coupling of Indoles.

Huan GuoNingning SunJuan GuoTai-Ping ZhouLangyu TangWentao ZhangYaming DengRong-Zhen LiaoYuzhou WuGuojiao WuFangrui Zhong
Published in: Angewandte Chemie (International ed. in English) (2023)
Herein, we disclose the highly enantioselective oxidative cross-coupling of 3-hydroxyindole esters with various nucleophilic partners as catalyzed by copper efflux oxidase. The biocatalytic transformation delivers functionalized 2,2-disubstituted indolin-3-ones with excellent optical purity (90-99 % ee), which exhibited anticancer activity against MCF-7 cell lines, as shown by preliminary biological evaluation. Mechanistic studies and molecular docking results suggest the formation of a phenoxyl radical and enantiocontrol facilitated by a suited enzyme chiral pocket. This study is significant with regard to expanding the catalytic repertoire of natural multicopper oxidases as well as enlarging the synthetic toolbox for sustainable asymmetric oxidative coupling.
Keyphrases
  • molecular docking
  • room temperature
  • molecular dynamics simulations
  • high resolution
  • breast cancer cells
  • quantum dots
  • high speed
  • hiv testing
  • molecularly imprinted
  • high throughput sequencing
  • antiretroviral therapy