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Updated: Jan 12, 2026

Enzymatic Cascade Reactions for the Synthesis of Chiral Amino Alcohols from L-lysine
Published on: February 16, 2018
Photocatalytic Minisci Approach to Chiral 2-Hetaryl-1,2-aminoalcohols from β-Hydroxy-α-amino Acid-Derived Redox
Paula Oroz1, Carmen Bretón1, Miguel Torres1
1Departamento de Química, Instituto de Investigación en Química de la Universidad de La Rioja (IQUR), Universidad de La Rioja, C/Madre de Dios, 53, 26006 Logroño, La Rioja, Spain.
Abstract:
Chiral 1,2-aminoalcohols are privileged motifs in bioactive molecules, yet their stereocontrolled synthesis remains a challenge. Here, we report a general, metal-free photoredox Minisci strategy that converts bicyclic N,O-acetals derived from β-hydroxy-α-amino acids into enantiopure 2-hetaryl-1,2-aminoalcohols with complete stereoretention. This diastereoselective radical α-hetarylation proceeds under visible light and mild conditions, tolerating diverse substitution patterns on both the heteroarene and the bicyclic scaffold. Combined experimental and quantum mechanical studies reveal that dispersion (CH/π) interactions between the incoming heteroarene and the bridgehead methyl group govern the unexpected facial selectivity in the C-C bond-forming step. The products serve as versatile precursors to medicinally relevant scaffolds, and the scalability of the process highlights its synthetic utility. This work establishes a broadly applicable platform for the stereocontrolled radical functionalization of amino acid derivatives.
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