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Published January 4, 2013 | Published + Supplemental Material
Journal Article Open

Synthesis of Cyclic Py-Im Polyamide Libraries

Abstract

Cyclic Py-Im polyamides containing two GABA turn units exhibit enhanced DNA binding affinity, but extensive studies of their biological properties have been hindered due to synthetic inaccessibility. A facile modular approach toward cyclic polyamides has been developed via microwave-assisted solid-phase synthesis of hairpin amino acid oligomer intermediates followed by macrocyclization. A focused library of cyclic polyamides 1–7 targeted to the androgen response element (ARE) and the estrogen response element (ERE) were synthesized in 12–17% overall yield. The Fmoc protection strategy also allows for selective modifications on the GABA turn units that have been shown to improve cellular uptake properties. The DNA binding affinities of a library of cyclic polyamides were measured by DNA thermal denaturation assays and compared to the corresponding hairpin polyamides. Fluorescein-labeled cyclic polyamides have been synthesized and imaged via confocal microscopy in A549 and T47D cell lines. The IC_50 values of compounds 1–7 and 9–11 were determined, revealing remarkably varying levels of cytotoxicity.

Additional Information

© 2013 American Chemical Society. ACS AuthorChoice. Received: September 24, 2012; Published: October 29, 2012. This article is part of the Robert Ireland Memorial Issue special issue. This work was supported by the National Institutes of Health (GM27681). B.C.L. is grateful to the California Tobacco-Related Disease Research Program (18DT-0015) for a dissertation award. D.C.M. is thankful to the National Institutes of Health for a predoctoral research training grant (5T32GM007616). The authors would like to thank Dr. Amanda E. Hargrove for helpful discussions, and Dr. Jordan L. Meier for assistance with molecular modeling. The authors declare no competing financial interest.

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