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Whydration effects on DNA double helix stability modulates ligand binding to natural DNA in response to changes in water activity
(Cellular & Molecular Biology, 2001-07-01)
In this work we present evidence that water molecules are actively involved on the control of binding affinity and binding site discrimination of a drug to natural DNA. In a previous study, the effect of water activity ...
Whydration effects on DNA double helix stability modulates ligand binding to natural DNA in response to changes in water activity
(Cellular & Molecular Biology, 2001-07-01)
In this work we present evidence that water molecules are actively involved on the control of binding affinity and binding site discrimination of a drug to natural DNA. In a previous study, the effect of water activity ...
Effects of caffeine on the structure and conformation of DNA: A force spectroscopy study
(International Journal of Biological Macromolecules, 2019)
Biophysical characterization of the DNA interaction with the biogenic polyamine putrescine: a single molecule study
(International Journal of Biological Macromolecules, 2018)
Whydration effects on DNA double helix stability modulates ligand binding to natural DNA in response to changes in water activity
(Cellular & Molecular Biology, 2014)
DNA-doxorubicin interaction: New insights and peculiarities
(Biopolymers, 2017)
Interaction of Organophosphorus Pesticides with DNA Nucleotides on a Boron-Doped Diamond Electrode
(Soc Brasileira Quimica, 2013-12-01)
Diamond electrode was used to evaluate the interaction of the nucleotides guanosine monophosphate (GMP) and adenosine monophosphate (AMP) with the pesticides chlorpyrifos, methamidophos and monocrotophos. Changes were ...
Torsional Mechanics of DNA Are Regulated by Small-Molecule Intercalation
(AMER CHEMICAL SOC, 2010)
Whether the bend and twist mechanics of DNA molecules are coupled is unclear. Here, we report the direct measurement of the resistive torque of single DNA molecules to study the effect of ethidium bromide (EtBr) intercalation ...
Shifting molecular localization by plasmonic coupling in a single-molecule mirage
(Nature Publishing Group, 2017-01)
Over the last decade, two fields have dominated the attention of sub-diffraction photonics research: Plasmonics and fluorescence nanoscopy. Nanoscopy based on single-molecule localization offers a practical way to explore ...