Enantioselective Synthesis of Primary 1-(Aryl)alkylamines by Nucleophilic 1,2-Addition of Organolithium Reagents to Hydroxyoxime Ethers and Application to Asymmetric Synthesis of G-Protein-Coupled Receptor Ligands
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https://figshare.com/articles/dataset/Enantioselective_Synthesis_of_Primary_1_Aryl_alkylamines_by_Nucleophilic_1_2_Addition_of_Organolithium_Reagents_to_Hydroxyoxime_Ethers_and_Application_to_Asymmetric_Synthesis_of_G_Protein_Coupled_Receptor_Ligands/3374944
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资源简介:
(E)-Arylaldehyde oxime ethers bearing a (1S)-2-hydroxy-1-phenylethyl or (2R)-1-hydroxy-2-phenylethyl group as a chiral auxiliary, both derived from a single precursor, methyl (R)-mandelate,
underwent nucleophilic addition with organolithium reagents via six-membered chelates to give
the diastereomerically enriched (R)- and (S)-adducts, respectively, which, after chiral auxiliary
removal by reductive N−O bond cleavage, led to the corresponding (R)- and (S)-1-(aryl)ethylamines.
This organolithium addition protocol using methyllithium was applied in an enantiodivergent
fashion to the preparation of both enantiomers of 1-(2-hydroxyphenyl)ethylamine, which has been
previously used as an efficient chiral auxiliary for the synthesis of natural products in this
laboratory. The synthetic utility of this methodology involving diastereoselective methyl addition
was demonstrated by further application to the asymmetric synthesis of a new type of calcium
receptor agonist (calcimimetics), (R)-(+)-NPS R-568 and its thio analogue. Furthermore, diastereoselective vinylation was accomplished by application of the hydroxy oxime ether-based protocol
using vinyllithium, which allowed the development of the enantioselective synthesis of the NK-1
receptor antagonists, (+)-CP-99,994 and (+)-CP-122,721.
创建时间:
2016-05-12



