Efficient Synthesis of Enantiomerically Pure β<sup>2</sup>-Amino Acids via Chiral Isoxazolidinones
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TL;DR
This route provides access to both enantiomers of a protected beta(2)-amino acid, which is useful for beta-peptide synthesis.
Abstract
We report a practical and scalable synthetic route for the preparation of alpha-substituted beta-amino acids (beta(2)-amino acids). Michael addition of a chiral hydroxylamine, derived from alpha-methylbenzylamine, to an alpha-alkylacrylate followed by cyclization gives a diastereomeric mixture of alpha-substituted isoxazolidinones. These diastereomers are separable by column chromatography. Subsequent hydrogenation of the purified isoxazolidinones followed by Fmoc protection affords enantiomerically pure Fmoc-beta(2)-amino acids, which are useful for beta-peptide synthesis. This route provides access to both enantiomers of a protected beta(2)-amino acid.
