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Guanine-rich sequences may fold into highly ordered structures known as G-quadruplexes. Apart from the monomeric G-quadruplex, these sequences may form multimeric structures that are not usually considered when studying interaction with ligands. This work studies the interaction of a ligand, crystal violet, with three guanine-rich DNA sequences with the capacity to form multimeric structures. These sequences correspond to short stretches found near the promoter regions of c-kit and SMARCA4 genes. Instrumental techniques (circular dichroism, molecular fluorescence, size-exclusion chromatography and electrospray ionization mass spectrometry) and multivariate data analysis were used for this purpose. The polymorphism of G-quadruplexes was characterized prior to the interaction studies. The ligand was shown to interact preferentially with the monomeric G-quadruplex; the binding stoichiometry was 1:1 and the binding constant was in the order of 105M-1 for all three sequences. The results highlight the importance of DNA treatment prior to interaction studies.
Polymorphism (Crystallography), Spectrometry, Mass, Electrospray Ionization, Guanine, G-estructures, Binding equilibria, Ligands, Nucleic Acid Denaturation, Anàlisi multivariable, Polymorphism, Polymorphism, Genetic, G-quadruplex, Circular Dichroism, Polimorfisme (Cristal·lografia), DNA, Crystal violet, G-Quadruplexes, Lligands, Multivariate analysis, Multivariate Analysis, Chromatography, Gel, Gentian Violet, G-structures
Polymorphism (Crystallography), Spectrometry, Mass, Electrospray Ionization, Guanine, G-estructures, Binding equilibria, Ligands, Nucleic Acid Denaturation, Anàlisi multivariable, Polymorphism, Polymorphism, Genetic, G-quadruplex, Circular Dichroism, Polimorfisme (Cristal·lografia), DNA, Crystal violet, G-Quadruplexes, Lligands, Multivariate analysis, Multivariate Analysis, Chromatography, Gel, Gentian Violet, G-structures
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