Disclosed
in this Letter is a novel asymmetric addition of alkynyl
nucleophiles to N-alkylpyridinium electrophiles.
The coupling is effected under mild and simple reaction conditions,
affording dihydropyridine products with complete regiochemical and
stereochemical control. In addition to several manipulations of the
dihydropyridine products, the utility of this transformation is demonstrated
through a concise, dearomative, and asymmetric synthesis of (+)-lupinine,
a natural acetylcholine esterase inhibitor.
Disclosed in this communication is a novel asymmetric addition of alkynyl nucleophiles to <i>N</i>-alkyl pyridinium electrophiles. The coupling is effected under mild and simple reaction conditions, affording dihydropyridine products with complete regiochemical and stereochemical control. In addition to several manipulations of the dihyropyridine products, the utility of this transformation is demonstrated through a concise, dearomative, and asymmetric synthesis of (+)-lupinine, a natural acetylcholine esterase inhibitor.
Disclosed in this communication is a novel asymmetric addition of alkynyl nucleophiles to <i>N</i>-alkyl pyridinium electrophiles. The coupling is effected under mild and simple reaction conditions, affording dihydropyridine products with complete regiochemical and stereochemical control. In addition to several manipulations of the dihyropyridine products, the utility of this transformation is demonstrated through a concise, dearomative, and asymmetric synthesis of (+)-lupinine, a natural acetylcholine esterase inhibitor.
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