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Asymmetric Synthesis of Akt Kinase Inhibitor Ipatasertib.

Chong HanScott SavageMohammad Al-SayahHerbert YajimaTravis RemarchukReinhard ReentsBeat WirzHans IdingStephan BachmannSerena M FantasiaMichelangelo ScaloneAndré HellPirmin HidberFrancis Gosselin
Published in: Organic letters (2017)
A highly efficient asymmetric synthesis of the Akt kinase inhibitor ipatasertib (1) is reported. The bicyclic pyrimidine 2 starting material was prepared via a nitrilase biocatalytic resolution, halogen-metal exchange/anionic cyclization, and a highly diastereoselective biocatalytic ketone reduction as key steps. The route also features a halide activated, Ru-catalyzed asymmetric hydrogenation of a vinylogous carbamic acid to produce α-aryl-β-amino acid 3 in high yield and enantioselectivity. The API was assembled in a convergent manner through a late-stage amidation/deprotection/monohydrochloride salt formation sequence.
Keyphrases
  • highly efficient
  • amino acid
  • signaling pathway
  • cell proliferation
  • solid state
  • single molecule
  • quantum dots
  • solar cells
  • perovskite solar cells