The long-term objectives of this research program are (1) to achieve efficient total syntheses of natural products, which could benefit human health, through the development of powerful chemical methods and strategies, and (2) to investigate the modes of action of bioactive natural products. This grant application addresses the chemical problems posed by five biologically active natural products and its Specific Aims are: (1) to develop novel synthetic routes to the natural products harziphilone and fleephilone and characterize how these compounds inhibit binding between the HIV-1 Rev protein and the Rev Responsive Element (RRE) of viral mRNA, a required event in the replication of HIV-1 ; and (2) to achieve concise syntheses of TAEMC-161 and the steroidal antibiotics viridiol and viridin. The function of the protein HIV-1 Rev is essential for the replication of HIV and, therefore, an excellent target for therapeutic intervention. Harziphilone and fleephilone are natural products that block the critical HIV-1 Rev/RRE RNA interaction. The important bioactivities and unique structural features of these compounds make them compelling objectives for organic synthesis. A tandem process comprising three structural transformations is proposed to convert an acyclic bis-ynone to harziphilone, while an aza-ring annulation featuring the intramolecular addition of a carbon nucleophile to pyridinium or iminium ions is the cornerstone of the proposed approach to the unusual structure of fleephilone. The furanosteroid viridin and its structural relatives are cell permeable, selective inhibitors of PI 3-kinase, an enzyme essential for many biological processes, and have potential as therapeutic agents for the treatment of neoplasms in humans. As such, these compounds and other natural products that act by analogous mechanisms are prime targets for organic synthesis. This grant application describes how an efficient reaction sequence featuring metal-catalyzed cyclotrimerization, carbonyl addition, and sequential electrocyclic reactions can be integrated into a general plan for syntheses of viridiol and viridin and also illustrates a structural and potential chemical relationship between these compounds and the recently described natural product TAEMC-161. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM065483-05
Application #
7060007
Study Section
Medicinal Chemistry Study Section (MCHA)
Program Officer
Schwab, John M
Project Start
2003-05-01
Project End
2008-04-30
Budget Start
2006-05-01
Budget End
2008-04-30
Support Year
5
Fiscal Year
2006
Total Cost
$281,388
Indirect Cost
Name
Princeton University
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
002484665
City
Princeton
State
NJ
Country
United States
Zip Code
08544
Forneris, Clarissa C; Ozturk, Seyma; Sorensen, Erik J et al. (2018) Installation of Multiple Aryl Ether Crosslinks onto Non-Native Substrate Peptides by the Vancomycin OxyB. Tetrahedron 74:3231-3237
Abrams, Dylan J; West, Julian G; Sorensen, Erik J (2017) Toward a mild dehydroformylation using base-metal catalysis. Chem Sci 8:1954-1959
Forneris, Clarissa C; Ozturk, Seyma; Gibson, Marcus I et al. (2017) In Vitro Reconstitution of OxyA Enzymatic Activity Clarifies Late Steps in Vancomycin Biosynthesis. ACS Chem Biol 12:2248-2253
West, Julian G; Bedell, T Aaron; Sorensen, Erik J (2016) The Uranyl Cation as a Visible-Light Photocatalyst for C(sp(3) )-H Fluorination. Angew Chem Int Ed Engl 55:8923-7
Liu, Junjia; Bedell, T Aaron; West, Julian G et al. (2016) Design and Synthesis of Molecular Scaffolds with Anti-infective Activity. Tetrahedron 72:3579-3592
Liu, Junjia; Marsini, Maurice A; Bedell, T Aaron et al. (2016) Diastereoselective syntheses of substituted cis-hydrindanones featuring sequential inter- and intramolecular Michael reactions. Tetrahedron 72:3713-3717
Bedell, T Aaron; Hone, Graham A B; Bois, Justin Du et al. (2015) An expedient synthesis of maraviroc (UK-427,857) via C-H functionalization. Tetrahedron Lett 56:3620-3623
West, Julian G; Huang, David; Sorensen, Erik J (2015) Acceptorless dehydrogenation of small molecules through cooperative base metal catalysis. Nat Commun 6:10093
Siler, David A; Mighion, Jeffrey D; Sorensen, Erik J (2014) An enantiospecific synthesis of jiadifenolide. Angew Chem Int Ed Engl 53:5332-5
Reber, Keith P; Tilley, S David; Carson, Cheryl A et al. (2013) Toward a synthesis of hirsutellone B by the concept of double cyclization. J Org Chem 78:9584-607

Showing the most recent 10 out of 28 publications