9β,19-Cyclosterol Analysis by 1H and 13C NMR, Crystallographic Observations, and Molecular Mechanics Calculations

Using modern NMR techniques, including COSY, HOHAHA, 2D J spectrum, NOESY, HETCOR and HMBC, determination of 13C T 1 spin−lattice relaxation times, and molecular modeling, permitted the full assignment of all 1H and 13C chemical shifts and geminal and vicinal coupling constants of cycloartenol. Ster...

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Published inJournal of the American Chemical Society Vol. 120; no. 24; pp. 5970 - 5980
Main Authors Nes, W. David, Koike, Kazuo, Jia, Zhonghua, Sakamoto, Yohko, Satou, Tadaaki, Nikaido, Tamotsu, Griffin, Jane F
Format Journal Article
LanguageEnglish
Japanese
Published American Chemical Society 24.06.1998
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Summary:Using modern NMR techniques, including COSY, HOHAHA, 2D J spectrum, NOESY, HETCOR and HMBC, determination of 13C T 1 spin−lattice relaxation times, and molecular modeling, permitted the full assignment of all 1H and 13C chemical shifts and geminal and vicinal coupling constants of cycloartenol. Stereochemical assignments related to the solution conformation of cycloartenol established unambiguously the nucleus assumes a flat structure and the side chain orients preferentially into a “right-handed” conformation, i.e., 20α-H atom is in front and opposing (in a 1,3-diaxial relationship with) the C18 angular methyl group thereby positioning C22 to the right of C20 (H20 trans oriented to H17) in the usual view of the molecule. The crystal structures of two naturally occurring 9β,19-cyclopropylcycloartenol metabolites, 4-normethylcycloartenol and 4,4-dinormethylcycloartenol, have also been determined and found to possess a three-dimensional shape similar to that of cycloartenol. The biosynthetic implications of these findings are discussed in relation to the cyclization of squalene oxide to cycloartenol.
Bibliography:istex:159DAC76C9F700C305E1F385403234D923024267
ark:/67375/TPS-RVJ3HR5T-Q
ISSN:0002-7863
1520-5126
DOI:10.1021/ja9802504