SYNTHESIS OF BETA-CYPERONE VIA FUNGAL HYDROXYLATION OF THUJONE-DERIVED TRICYCLIC CYCLOPROPANES

被引:7
作者
KUTNEY, JP
WAGNER, J
HEWITT, GM
机构
[1] Department of Chemistry, University of British Columbia, Vancouver, British Columbia, V6T 1Z1
[2] Scripps Institute, San Diego, California
关键词
D O I
10.1002/hlca.19940770704
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Synthesis of optically active sesquiterpenes with a eudesmane C-skeleton from the chiral starting material thujone involves transformation of a tricyclic intermediate (1R,2R,4S)-1,7-dimethyl-4-(1-methylethyl)tricyclo[4.4.0.0(2,4)] dec-6-en-8-one (2) into the bicyclic compound beta-cyperone (5). Hydroxylation of 2 at C(5) or C(11) permits subsequent opening of the cyclopropane ring and rearrangement top beta-cyperone. In this publication, studies involving hydroxylation of 2 by fungal cultures are presented. The resultant products are useful intermediates in efficient synthesis of eudesmane sesquiterpenes. Of five fungi tested, Rhizopus oryzae ATCC 11145 proved most versatile. It hydroxylates at the exoyclic C(11) position in high yield (70%) and, to a lesser extent, at C(5) (5%). Enzymatic activity appears at the end of growth phase and at least 2.2 g of 2 per liter can be metabolized without significant loss of product yield. A second fungus, Cunninghamella echinulata ATCC 9244, proved most useful for hydroxy]ation of derivatives of 2 for the preparation of derivatives of beta-cyperone, although product yields were low (2-20%), some derivatives were nonreactive, and hydroxylation at C(9) occurred. The relationship between precursor structure and enzyme affinity is discussed.
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页码:1707 / 1720
页数:14
相关论文
共 37 条
[1]   CHEMICAL-MICROBIOLOGICAL SYNTHESES OF 6-BETA-EUDESMANOLIDES - INCUBATION OF 6-BETA-ACETOXYEUDESMANES BY CURVULARIA-LUNATA [J].
ARIAS, JM ;
GARCIAGRANADOS, A ;
MARTINEZ, A ;
ONORATO, ME ;
RIVAS, F .
TETRAHEDRON LETTERS, 1988, 29 (35) :4471-4472
[2]   THE REACTION OF TRIMETHYL CHLOROSILANE WITH ALPHA-CYCLOPROPANIC ALCOHOLS IN THE PRESENCE OR IN THE ABSENCE OF LITHIUM HALOGENIDES [J].
BALME, G ;
FOURNET, G ;
GORE, J .
TETRAHEDRON LETTERS, 1986, 27 (17) :1907-1908
[3]  
BIERNACKI W, 1970, SYNTHESIS-STUTTGART, P37
[4]   A HIGHLY STEREOSELECTIVE SYNTHESIS OF TRANS-TRISUBSTITUTED OLEFINIC BONDS [J].
BRADY, SF ;
ILTON, MA ;
JOHNSON, WS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1968, 90 (11) :2882-+
[5]  
COOKE M P JR, 1973, Tetrahedron Letters, V15, P1281
[6]  
DAVIES HG, 1989, BIOTRANSFORMATIONS P
[7]  
Fonken G., 1972, CHEM OXIDATIONS MICR
[8]   CHEMICAL-MICROBIOLOGICAL SYNTHESIS OF 6-BETA-EUDESMANOLIDES FROM 11-HYDROXYL DERIVATIVES - SYNTHESIS OF 6-BETA-DENDROSERINS BY RHIZOPUS-NIGRICANS [J].
GARCIAGRANADOS, A ;
MARTINEZ, A ;
RIVAS, F ;
ONORATO, ME ;
ARIAS, JM .
TETRAHEDRON LETTERS, 1991, 32 (39) :5383-5384
[9]   CHEMICAL-MICROBIOLOGICAL SYNTHESIS OF 6-BETA-EUDESMANOLIDES BY CURVULARIA-LUNATA CULTURES FROM EUDESMANES WITH FUNCTIONS AT C-1 AND C-6 [J].
GARCIAGRANADOS, A ;
MARTINEZ, A ;
ONORATO, ME ;
RIVAS, F ;
ARIAS, JM .
TETRAHEDRON, 1991, 47 (01) :91-102
[10]  
GUNNING P, 1992, THESIS U BRIT COLUMB