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Asymmetric synthesis of syn-propargylamines and unsaturated ?-amino acids under Bronsted base catalysis.


ABSTRACT: Propargylamines are important intermediates for the synthesis of polyfunctional amino derivatives and natural products and biologically active compounds. The classic method of synthesizing chiral propargylamines involves the asymmetric alkynylation of imines. Here, we report a significant advance in the catalytic asymmetric Mannich-type synthesis of propargylamines through catalytic asymmetric addition of carbon nucleophiles to C-alkynyl imines, culminating in a highly syn-selective catalytic asymmetric Mannich reaction of C-alkynyl imines that provide syn-configured propargylamines with two adjacent stereogenic centres and a transition metal-free organocatalytic asymmetric approach to ?-alkynyl-?-amino acids with high efficiency and practicality, via a chiral Brønsted base-catalysed asymmetric Mannich-type reaction of in situ generated challenging N-Boc C-alkynyl imines from previously unreported C-alkynyl N-Boc-N,O-acetals, with ?-substituted ?-keto esters and less-acidic malonate (thio)esters as nucleophiles, respectively. A catalytic activation strategy is also disclosed, which may have broad implications for use in catalysis and synthesis.

SUBMITTER: Wang Y 

PROVIDER: S-EPMC4600747 | biostudies-literature | 2015 Oct

REPOSITORIES: biostudies-literature

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Asymmetric synthesis of syn-propargylamines and unsaturated β-amino acids under Brønsted base catalysis.

Wang Yingcheng Y   Mo Mingjie M   Zhu Kongxi K   Zheng Chao C   Zhang Hongbin H   Wang Wei W   Shao Zhihui Z  

Nature communications 20151001


Propargylamines are important intermediates for the synthesis of polyfunctional amino derivatives and natural products and biologically active compounds. The classic method of synthesizing chiral propargylamines involves the asymmetric alkynylation of imines. Here, we report a significant advance in the catalytic asymmetric Mannich-type synthesis of propargylamines through catalytic asymmetric addition of carbon nucleophiles to C-alkynyl imines, culminating in a highly syn-selective catalytic as  ...[more]

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