Asymmetric Intramolecular α‐Arylation of Polar Amino Acids Bearing β‐Leaving Groups

Ömer Taspinar (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) D Daniel J. Leonard (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) N Nathan Picois (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) C Cornelia Göcke (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) M Matej Žabka (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) H Hazel A. Sparkes (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) J Jonathan Clayden

Abstract

Abstract The α‐arylation of amino acids may be achieved by intramolecular nucleophilic aromatic substitution (S N Ar) reactions of amino‐acid derived enolates, but for amino acids bearing β‐leaving groups, such reactions are complicated by competing E1cB elimination of the β‐substituent. In this paper we report an approach to the arylation of the polar amino acids serine, cysteine, diaminopropionic acid, and allothreonine by inducing intramolecular S N Ar reactions of heterocycles, which the heteroatom substituent is stereoelectronically protected from elimination by incorporating it into the ring system of N ‐carbamoyl oxazolidines, thiazolidines, or imidazolidines. The sequence comprises the diastereoselective formation of a heterocyclic urea followed by an intramolecular N‐to‐C aryl migration, yielding bicyclic hydantoins that can be further hydrolysed to afford quaternary α‐aryl amino acids. The method is practical and scalable, avoids the use of transition metals or chiral auxiliaries, and provides the opportunity to access a variety of α‐arylated products bearing electronically diverse benzenoid or heterocyclic substituents (35 examples).

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

Ömer Taspinar

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

D

Daniel J. Leonard

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

N

Nathan Picois

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

C

Cornelia Göcke

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

M

Matej Žabka

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

H

Hazel A. Sparkes

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

J

Jonathan Clayden