TY - JOUR
T1 - Catalytic asymmetric amination of N-nonsubstituted α-alkoxycarbonyl amides
T2 - Concise enantioselective synthesis of mycestericina F and G
AU - Berhal, Farouk
AU - Takechi, Sho
AU - Kumagai, Naoya
AU - Shibasaki, Masakatsu
PY - 2011/12/7
Y1 - 2011/12/7
N2 - In an attempt to explore the synthetic utility of a ternary asymmetric catalyst comprising La(NO3)3·6H2O, amide-based ligand (R)-L1, and D-valine tert-butyl ester H-D-Val-OtBu, we investigated a catalytic, asymmetric amination of functionalized N-nonsubstituted α-alkoxycarbonyl amides using di-tert-butyl azodicarboxylate as an electrophilic aminating reagent. A highly functionalized, cyclic N-nonsubstituted α-alkoxycarbonyl amide delivered the desired amination product in up to 96% enantiometric excess, with the requisite functionalities of the polar heads of sphingosines with the appropriate stereochemical arrangement. The rapid asymmetric assembly of these functional groups allowed a concise enantioselective synthetic route to sphingosines to be established with a broad flexibility towards derivative synthesis. These studies have culminated in an efficient catalytic enantioselective total synthesis of immunosuppressive fungal metabolites mycestericina F (3a) and G (3b).
AB - In an attempt to explore the synthetic utility of a ternary asymmetric catalyst comprising La(NO3)3·6H2O, amide-based ligand (R)-L1, and D-valine tert-butyl ester H-D-Val-OtBu, we investigated a catalytic, asymmetric amination of functionalized N-nonsubstituted α-alkoxycarbonyl amides using di-tert-butyl azodicarboxylate as an electrophilic aminating reagent. A highly functionalized, cyclic N-nonsubstituted α-alkoxycarbonyl amide delivered the desired amination product in up to 96% enantiometric excess, with the requisite functionalities of the polar heads of sphingosines with the appropriate stereochemical arrangement. The rapid asymmetric assembly of these functional groups allowed a concise enantioselective synthetic route to sphingosines to be established with a broad flexibility towards derivative synthesis. These studies have culminated in an efficient catalytic enantioselective total synthesis of immunosuppressive fungal metabolites mycestericina F (3a) and G (3b).
KW - amide-based ligands
KW - asymmetric catalysis
KW - asymmetric synthesis
KW - cooperative effects
KW - natural products
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U2 - 10.1002/chem.201002874
DO - 10.1002/chem.201002874
M3 - Article
C2 - 21274942
AN - SCOPUS:79551499614
SN - 0947-6539
VL - 17
SP - 1915
EP - 1921
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 6
ER -