Enantioselective Synthesis of (+)-Obolactone Based on a Symmetry-Breaking Wacker Monooxidation of a Diene
摘要:
A concise synthesis of the dihydro-alpha-pyrone/dihydro-gamma-pyrone natural product (+)-obolactone (13) is disclosed. The dienediol acetonide 23 (>= 97% ee) was obtained from 1,5-dichloropentane-2,4-dione in four steps. A Wacker monooxidation of 23 furnished the monoketone 24 in 64% yield. The OH group of the ensuing dihydro-gamma-pyrone 31 was esterified under Mitsunobu conditions with cinnamic acid (-> 80% inversion and 20% retention of configuration). A ring-closing metathesis formed the dihydro-alpha-pyrone moiety of the target in the terminating step.
Enantioselective Synthesis of (+)-Obolactone Based on a Symmetry-Breaking Wacker Monooxidation of a Diene
摘要:
A concise synthesis of the dihydro-alpha-pyrone/dihydro-gamma-pyrone natural product (+)-obolactone (13) is disclosed. The dienediol acetonide 23 (>= 97% ee) was obtained from 1,5-dichloropentane-2,4-dione in four steps. A Wacker monooxidation of 23 furnished the monoketone 24 in 64% yield. The OH group of the ensuing dihydro-gamma-pyrone 31 was esterified under Mitsunobu conditions with cinnamic acid (-> 80% inversion and 20% retention of configuration). A ring-closing metathesis formed the dihydro-alpha-pyrone moiety of the target in the terminating step.
Lu, Yu; Kim, In Su; Hassan, Abbas, Angewandte Chemie - International Edition, 2009, vol. 48, p. 5018 - 5021
作者:Lu, Yu、Kim, In Su、Hassan, Abbas、Valle, David J. Del、Krische, Michael J.
DOI:——
日期:——
Enantioselective Synthesis of (+)-Obolactone Based on a Symmetry-Breaking Wacker Monooxidation of a Diene
作者:Patrick Walleser、Reinhard Brückner
DOI:10.1021/ol400232m
日期:2013.3.15
A concise synthesis of the dihydro-alpha-pyrone/dihydro-gamma-pyrone natural product (+)-obolactone (13) is disclosed. The dienediol acetonide 23 (>= 97% ee) was obtained from 1,5-dichloropentane-2,4-dione in four steps. A Wacker monooxidation of 23 furnished the monoketone 24 in 64% yield. The OH group of the ensuing dihydro-gamma-pyrone 31 was esterified under Mitsunobu conditions with cinnamic acid (-> 80% inversion and 20% retention of configuration). A ring-closing metathesis formed the dihydro-alpha-pyrone moiety of the target in the terminating step.