The proposed program is directed at a total synthesis of a wide range of biologically active medium-sized carbocylic and heterocyclic natural products. Our objective includes the development of general synthetic methods which would allow the preparation of natural products and their synthetic derivatives in significant quantities for biological testing. The new synthetic methods include (1) the (4 + 3] cycloadditions of cyclic oxyallyls (i.e., the oxyallyl functionality is embedded in a ring) and heteratom-substituted oxyallyls;(2) the tandem applications of the diastereoselective hydroxycyclopropanation and the oxy-Cope rearrangement or free-radical ring closure; (3) the furan-mediated annulation and subsequent furan to cyclopentenone rearrangement. Specific target molecules include ingenol (1a) and/or phorbol (2a) which are potent cocarcinogenic diterpenes; ophiobolins (4) which show interesting inhibitory activities of Ca2+-binding calmodulins or angiotensin II receptor binding; colchicine (6)which binds to tublin and thus offers potent antimitotic activities; and furanoheliangolide sesquiterpenes (9- 14), some of which have been shown to exhibit significant levels of in vitro antitumor activity. Concurrent with these new foci, we will also bring to a successful conclusion several ongoing research projects involving the development of general, practical syntheses of structurally diverse bioactive natural products. The target compounds include alpha-pyrone polyene mycotoxins of the citreoviridin family, which are potent inhibitors of oxidative phospho; erythromycin A which is a representative member of clinically important macrolide antibiotics; bioactive alkaloids such as polyhydroxy indolizidine alkaloids and their glycoconjugates, clavepictines, and gephrotoxin, which have shown antitumor activity or provided invaluable tools for the investigation of ion transport in many biological systems; and allene oxide-derived prostanoids whose biogenesis has fascinating evolutionary implications.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM035956-13
Application #
2734536
Study Section
Medicinal Chemistry Study Section (MCHA)
Project Start
1986-07-01
Project End
2000-06-30
Budget Start
1998-07-01
Budget End
1999-06-30
Support Year
13
Fiscal Year
1998
Total Cost
Indirect Cost
Name
University of Alabama in Tuscaloosa
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
City
Tuscaloosa
State
AL
Country
United States
Zip Code
35487
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