A continuous assay for DNA cleavage: The application of 'break lights' to enediynes, iron-dependent and nucleases Journal Article


Authors: Biggins, J. B.; Prudent, J. R.; Marshall, D. J.; Ruppen, M.; Thorson, J. S.
Article Title: A continuous assay for DNA cleavage: The application of 'break lights' to enediynes, iron-dependent and nucleases
Abstract: Although extensive effort has been applied toward understanding the mechanism by which enediynes cleave DNA, a continuous assay for this phenomenon is still lacking. In fact, with the exception of assays for DNase, continuous assays for most DNA cleavage events are unavailable. This article describes the application of 'molecular break lights' (a single-stranded oligonucleotide that adopts a stemand-loop structure and carries a 5'-fluorescent moiety, a 3'-nonfluorescent quenching moiety, and an appropriate cleavage site within the stem) to develop the first continuous assay for cleavage of DNA by enediynes. Furthermore, the generality of this approach is demonstrated by using the described assay to directly compare the DNA cleavage by naturally occurring enediynes [calicheamicin and esperamicin), non-enediyne small molecule agents (bleomycin, methidiumpropyI-EDTA-Fe(II), and EDTA-Fe(II]), as well as the restriction endonuclease BamHI. Given the simplicity, speed, and sensitivity of this approach, the described methodology could easily be extended to a high throughput format and become a new method of choice in modern drug discovery to screen for novel protein-based or small molecule-derived DNA cleavage agents.
Keywords: methodology; assay; anti-bacterial agents; dna; kinetics; drug mechanism; iron; bleomycin; restriction endonuclease; spectrofluorometry; catalysis; molecular beacon; hydrolysis; chelation; dna cleavage; aminoglycosides; deoxyribonucleases; calicheamicin; enediynes; priority journal; article; esperamicin; bleomycin sulfate; edetic acid derivative
Journal Title: Proceedings of the National Academy of Sciences of the United States of America
Volume: 97
Issue: 25
ISSN: 0027-8424
Publisher: National Academy of Sciences  
Date Published: 2000-12-05
Start Page: 13537
End Page: 13542
Language: English
DOI: 10.1073/pnas.240460997
PUBMED: 11095715
PROVIDER: scopus
PMCID: PMC17611
DOI/URL:
Notes: Export Date: 18 November 2015 -- Source: Scopus
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  1. Jon S Thorson
    22 Thorson