TY - JOUR
T1 - Chemoenzymatic route to both enantiomers of a 1-isopropyl-3a- methyloctahydroinden-4-one derivative
T2 - A synthetic intermediate for sesqui- and diterpenoids
AU - Fujieda, Shigeo
AU - Tomita, Mina
AU - Fuhshuku, Ken Ichi
AU - Ohba, Shigeru
AU - Nishiyama, Shigeru
AU - Sugai, Takeshi
PY - 2005/6
Y1 - 2005/6
N2 - On the way to a chemoenzymatic synthesis of a key intermediate for sesquiterpenoids and diterpenoids, 2-methyl-2-(4-methyl-3-oxopentyl)-1,3- cyclohexanedione was reduced with the whole cells of yeast biocatalysts. Torulaspora delbrueckii NBRC10921 reduced a cyclic ketone of three carbonyl groups in an enantiofacially selective manner (reface attack), but there was poor enantiotopic group selectivity between two carbonyl groups on the cyclohexane ring to yield a mixture of diastereomeric products. Candida floricola IAM13115 reduced mainly the pro-(R) carbonyl group. In contrast, the reduction proceeded in an enantiofacially poorly selective manner to give another set of diastereomeric products. In both cases, another carbonyl group on the side chain worked as a 'trapping arm' of the resulting secondary alcohol. The diastereomeric products were effectively separated as the 'syn' or 'cis' isomer exclusively exist in the intramolecular hemiacetal structure, while 'anti' or 'trans' isomer being an equilibrated mixture of cyclic hemiacetal and open-chain hydroxyketone (ca. 0.7:1). Starting separately from the enantiomerically enriched products as above, both enantiomers of the target compound, a key intermediate for terpenoids, were efficiently prepared via stereoselective ring closure under pinacol coupling reaction conditions. Furthermore, a daucane sesquiterpene intermediate, a hydroazulene derivative, was provided after one-carbon homologation of the six-membered ring.
AB - On the way to a chemoenzymatic synthesis of a key intermediate for sesquiterpenoids and diterpenoids, 2-methyl-2-(4-methyl-3-oxopentyl)-1,3- cyclohexanedione was reduced with the whole cells of yeast biocatalysts. Torulaspora delbrueckii NBRC10921 reduced a cyclic ketone of three carbonyl groups in an enantiofacially selective manner (reface attack), but there was poor enantiotopic group selectivity between two carbonyl groups on the cyclohexane ring to yield a mixture of diastereomeric products. Candida floricola IAM13115 reduced mainly the pro-(R) carbonyl group. In contrast, the reduction proceeded in an enantiofacially poorly selective manner to give another set of diastereomeric products. In both cases, another carbonyl group on the side chain worked as a 'trapping arm' of the resulting secondary alcohol. The diastereomeric products were effectively separated as the 'syn' or 'cis' isomer exclusively exist in the intramolecular hemiacetal structure, while 'anti' or 'trans' isomer being an equilibrated mixture of cyclic hemiacetal and open-chain hydroxyketone (ca. 0.7:1). Starting separately from the enantiomerically enriched products as above, both enantiomers of the target compound, a key intermediate for terpenoids, were efficiently prepared via stereoselective ring closure under pinacol coupling reaction conditions. Furthermore, a daucane sesquiterpene intermediate, a hydroazulene derivative, was provided after one-carbon homologation of the six-membered ring.
KW - Chiral building block
KW - Desymmetrization
KW - Prochiral substrate
KW - Terpenoid synthesis
KW - Whole-cell biocatalyst
KW - Yeast reduction
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U2 - 10.1002/adsc.200505034
DO - 10.1002/adsc.200505034
M3 - Article
AN - SCOPUS:20544443716
SN - 1615-4150
VL - 347
SP - 1099
EP - 1109
JO - Advanced Synthesis and Catalysis
JF - Advanced Synthesis and Catalysis
IS - 7-8
ER -