(Principal Investigator's) The primary objective of this research is to continue to discover new strategies for the construction of complex carbocyclic or heterocyclic ring systems. A theme throughout this proposal is the further development and exploitation of new, reactive dienophiles and/or dienes derived from retrocycloaddition reactions of substituted 1,3-dioxins. I is expected that this new methodology will expedite the syntheses of biologically active natural products and/or analogs. Thus, thermolysis of 5-amido-1,3-dioxins will provide 2-amidoacroleins and facilitate the preparation of newly discovered biologically active natural products which embody an aminocyclohexane substructure. For example, the tricyclic ring systems of the recently discovered cytotoxic marine natural product fasicularin and the novel immunosuppressant FR901483 can be rapidly assembled from cycloadducts obtained from this new class of dienophiles and will lead to the first syntheses of these compounds. In addition, the amino-beta,C-glycopyranoside subunit of FR901464, a new anticancer agent possessing a novel mechanism of action, can be readily constructed using this methodology. 2-Acylacroleins can be similarly prepared via retrocycloadditions of 5-acyl-1,3-dioxins. These exceptional heterodienes undergo cycloadditions with enol ethers to afford 5-acyl-3,4-dihydropyrans, a substructural unit embodied in numerous natural products. This methodology will permit the first syntheses of cytotoxic marine natural products such as euplotin C. Another marine natura product, the antimitotic acalycixeniolide B will be synthesized using previously developed methodology and will constitute the first synthesis of a member of the xenicane class of compounds.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM028663-19A1
Application #
2690048
Study Section
Medicinal Chemistry Study Section (MCHA)
Project Start
1987-09-01
Project End
2002-06-30
Budget Start
1998-07-01
Budget End
1999-06-30
Support Year
19
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Pennsylvania State University
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
City
University Park
State
PA
Country
United States
Zip Code
16802
Belmar, Johannes; Funk, Raymond L (2012) Total synthesis of (±)-communesin F via a cycloaddition with indol-2-one. J Am Chem Soc 134:16941-3
Funk, Raymond L; Belmar, Johannes (2012) Total synthesis of (±)-isophellibiline. Tetrahedron Lett 53:176-178
Huntley, Raymond J; Funk, Raymond L (2011) Total synthesis of (±)-?-lycorane via the electrocyclic ring closure of a divinylpyrroline. Tetrahedron Lett 52:6671-6674
Nilson, Mark G; Funk, Raymond L (2011) Total synthesis of (±)-cortistatin J from furan. J Am Chem Soc 133:12451-3
Nilson, Mark G; Funk, Raymond L (2010) Total synthesis of (-)-nakadomarin A. Org Lett 12:4912-5
Huntley, Raymond J; Funk, Raymond L (2006) A strategy for the total synthesis of dragmacidin E. Construction of the core ring system. Org Lett 8:4775-8
Greshock, Thomas J; Funk, Raymond L (2006) Synthesis of indoles via 6pi-electrocyclic ring closures of trienecarbamates. J Am Chem Soc 128:4946-7
Nilson, Mark G; Funk, Raymond L (2006) Generation of N-acyliminium ions via intramolecular conjugate addition reactions: a strategy for the total synthesis of nakadomarin A. Org Lett 8:3833-6
Huntley, Raymond J; Funk, Raymond L (2006) Total syntheses of (+/-)-cis-trikentrin A and (+/-)-cis-trikentrin B via electrocyclic ring closures of 2,3-divinylpyrrolines. Org Lett 8:3403-6
He, Yong; Funk, Raymond L (2006) Total syntheses of (+/-)-beta-erythroidine and (+/-)-8-oxo-beta-erythroidine by an intramolecular Diels-Alder cycloaddition of a 2-amidoacrolein. Org Lett 8:3689-92

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