Structural perturbations in DNA caused by bis-intercalation of ditercalinium visualised by atomic force microscopy
- 1 July 2002
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 30 (13) , 2980-2986
- https://doi.org/10.1093/nar/gkf409
Abstract
Atomic force microscopy (AFM) has been used to examine perturbations in the tertiary structure of DNA induced by the binding of ditercalinium, a DNA bis-intercalator with strong anti-tumour properties. We report AFM images of plasmid DNA of both circular and linearised forms showing a difference in the formation of supercoils and plectonemic coils caused at least in part by alterations in the superhelical stress upon bis-intercalation. A further investigation of the effects of drug binding performed with 292 bp mixed-sequence DNA fragments, and using increment in contour length as a reliable measure of intercalation, revealed saturation occurring at a point where sufficient drug was present to interact with every other available binding site. Moment analysis based on the distribution of angles between segments along single DNA molecules showed that at this level of bis-intercalation, the apparent persistence length of the molecules was 91.7 +/- 5.7 nm, approximately twice as long as that of naked DNA. We conclude that images of single molecules generated using AFM provide a valuable supplement to solution-based techniques for evaluation of physical properties of biological macromolecules.This publication has 33 references indexed in Scilit:
- Intercalators. 1. Nature of Stacking Interactions between Intercalators (Ethidium, Daunomycin, Ellipticine, and 4‘,6-Diaminide-2-phenylindole) and DNA Base Pairs. Ab Initio Quantum Chemical, Density Functional Theory, and Empirical Potential StudyJournal of the American Chemical Society, 2002
- Simultaneous Topographic and Fluorescence Imaging of Single DNA Molecules for DNA Analysis with a Scanning Near-Field Optical/Atomic Force MicroscopeAnalytical Chemistry, 2001
- Towards a minimal motif for artificial transcriptional activatorsChemistry & Biology, 2001
- Monitoring DNA Immobilization and Hybridization on Surfaces by Atomic Force Microscopy Force MeasurementsAnalytical Chemistry, 2001
- Scanning force microscopy of nucleic acid complexesPublished by Elsevier ,2001
- Viewing of Complex Molecules of Ethidium Bromide and Plasmid DNA in Solution by Atomic Force Microscopy.CHEMICAL & PHARMACEUTICAL BULLETIN, 2001
- Atomic force microscopy studies of intercalation‐induced changes in plasmid DNA tertiary structureJournal of Microscopy, 2000
- Translocation-Independent Dimerization of the EcoKI Endonuclease Visualized by Atomic Force MicroscopyBiophysical Journal, 2000
- EditorialUrologia Internationalis, 2000
- Sequence-specific DNA recognition by polyamidesCurrent Opinion in Chemical Biology, 1999