Construction of Acyclic All-Carbon Quaternary Stereocenter Based on Asymmetric Michael Addition of Chiral Amine

Chem Pharm Bull (Tokyo). 2021;69(9):926-930. doi: 10.1248/cpb.c21-00436.

Abstract

Acyclic asymmetric quaternary stereocenters, which are composed of four carbon-carbon bonds, were finely constructed by utilizing a face-selective alkylation of enolate intermediates derived from an asymmetric Michael addition reaction of a chiral lithium amide with trisubstituted (E)-α,β-unsaturated esters. The present face-selective alkylation was able to employ diverse alkyl halides as an electrophile to afford various Michael adducts having an all-carbon quaternary stereocenter. With regard to the deprotection of the chiral auxiliary, N-iodosuccinimide used in our previous study did not work in the present cases; however, we found that pyridine iodine monochloride in the presence of H2O was effective to remove the bornyl group and the benzyl group on the amino group to provide the β-amino ester derivative.

Keywords: all-carbon quaternary stereocenter; asymmetric Michael addition; chiral amine; face-selective alkylation; trisubstituted (E)-α,β-unsaturated ester; β-amino ester.

MeSH terms

  • Amines / chemistry*
  • Carbon / chemistry*
  • Esters / chemistry
  • Molecular Structure
  • Stereoisomerism

Substances

  • Amines
  • Esters
  • Carbon