4.8 Article

Enzymatic Kinetic Resolution of Bulky Spiro-Epoxyoxindoles via Halohydrin Dehalogenase-Catalyzed Enantio- and Regioselective Azidolysis

Journal

ACS CATALYSIS
Volume 11, Issue 15, Pages 9066-9072

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.1c02345

Keywords

Biocatalysis; Spirooxindole; Kinetic resolution; Azidolysis; Halohydrin dehalogenase

Funding

  1. National Natural Science Foundation of China [31800663, 21961048]
  2. Guizhou Science and Technology Department [QKHJC-20191467, QKHZC-2019-2579]
  3. National First-Rate Construction Discipline of Guizhou Province (Pharmacy) [YLXKJS-YX-04]
  4. Science and Technology Department of Zunyi [ZSKRPT-2020-5]
  5. Program for Outstanding Youth of Zunyi Medical University [17zy-001]

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An efficient enzymatic process has been developed for the synthesis of valuable compounds through catalytic kinetic resolution, demonstrating synthetic utility and scalability.
It is significant to expand enzymatic catalysis in order to develop efficient strategies for the synthesis of valued molecules. Herein, an efficient enzymatic process involving the catalytic kinetic resolution of bulky spiro-epoxyoxindoles has been developed via halohydrin dehalogenase-catalyzed enantio- and regioselective azidolysis. The enzymatic reaction provides a range of chiral spiro-epoxyoxindoles and 3-(azidomethyl)-3-hydroxyoxindoles in good yields (up to 48% isolated yield) and optical purity (up to >99% ee), both of which are useful compounds in medicinal and synthetic chemistry. In addition, the substrate scope has been expanded to sterically hindered spiro-epoxyoxindoles by directed evolution of the enzyme. Moreover, gram-scale reaction and further transformations were also performed to demonstrate the synthetic utility and scalability of the enzymatic kinetic resolution strategy.

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