The broad scope of the work proposed involves the development of the chemistry of Fischer carbene complexes to the field of organic synthesis and to the synthesis of organic compounds of importance in human health. The reactions of Fischer carbene complexes with alkynes will be examined for the synthesis of the platelet activating factor antagonist phomactin D and for the synthesis of colchicine and allocolchicinoids that have been investigated for the treatment of gout, familial Mediterranean fever and liver cirrhosis. Asymmetric versions of this reaction will also be used to prepare aS,7S and aR,7S isomers of 1 2 - methylcolchinyl methyl ether to test an unresolved issue regarding the stereochemical requirements for binding of colchicine and allocolchicinoids to tubulin. A new strategy for the synthesis of the new anticancer agent eluetherobin will be explored which involves an intramolecular exo-selective Diels-Alder reaction as a key step. The aldol reaction of Fischer carbene complexes will be utilized in the first synthesis of the anticancer agent fostriecin and analogs of fostriecin which are more stable and thus more useful in the clinic. The reaction of Fischer carbene complexes with 1,6-enynes will be explored as a method for rapid access to the taxol family of antitumor agents. The the cyclopropanation reactions of chiral carbene complexes will be examined for the synthesis of aminocyclopropanes and for a synthesis of the antitumor agent helenalin which involves a tandem cyclopropanation/Cope rearrangement sequence.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM033589-18
Application #
6625039
Study Section
Medicinal Chemistry Study Section (MCHA)
Program Officer
Schwab, John M
Project Start
1983-12-01
Project End
2004-11-30
Budget Start
2002-12-01
Budget End
2004-11-30
Support Year
18
Fiscal Year
2003
Total Cost
$253,212
Indirect Cost
Name
Michigan State University
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
193247145
City
East Lansing
State
MI
Country
United States
Zip Code
48824
Vorogushin, Andrei V; Wulff, William D; Hansen, Hans-Jurgen (2008) Central-to-Axial Chirality Transfer in the Benzannulation Reaction of Optically Pure Fischer Carbene Complexes in the Synthesis of Allocolchicinoids. Tetrahedron 64:949-968
Korthals, Keith A; Wulff, William D (2008) Traceless stereoinduction in the one-pot assembly of all three rings of hexahydrodibenzopyrans. J Am Chem Soc 130:2898-9
Huang, Jie; Wang, Huan; Wu, Chunrui et al. (2007) Intramolecular cyclohexadienone annulations of Fischer carbene complexes: model studies for the synthesis of Phomactins. Org Lett 9:2799-802
Huang, Jie; Wu, Chunrui; Wulff, William D (2007) Total synthesis of (+/-)-phomactin B2 via an intramolecular cyclohexadienone annulation of a chromium carbene complex. J Am Chem Soc 129:13366-7
Rawat, Manish; Prutyanov, Victor; Wulff, William D (2006) Chromene chromium carbene complexes in the syntheses of naphthopyran and naphthopyrandione units present in photochromic materials and biologically active natural products. J Am Chem Soc 128:11044-53
Lian, Yiqian; Wulff, William D (2005) Iron in the service of chromium: the ortho-benzannulation of trans,trans-dienyl Fischer carbene complexes. J Am Chem Soc 127:17162-3
Jiang, May Xiao-Wu; Rawat, Manish; Wulff, William D (2004) Contingency and serendipity in the reactions of Fischer carbene complexes with conjugated triynes. J Am Chem Soc 126:5970-1
Rawat, Manish; Wulff, William D (2004) Total synthesis of carbazoquinocin C: application of the o-benzannulation of Fischer carbene complexes to carbazole-3,4-quinone alkaloids. Org Lett 6:329-32
Vorogushin, Andrei V; Wulff, William D; Hansen, Hans-Jurgen (2003) Steric vs hydrogen-bonding control of atropisomerization: preparation of either diastereomer of configurationally stable allocolchicinoids. J Org Chem 68:9618-23
Vorogushin, Andrei V; Predeus, Alexander V; Wulff, William D et al. (2003) Diels-Alder reaction-aromatization approach toward functionalized ring C allocolchicinoids. Enantioselective total synthesis of (-)-7S-allocolchicine. J Org Chem 68:5826-31

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