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Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)

Guanine-rich nucleic acid sequences can adopt G-quadruplex structures stabilized by layers of four Hoogsteen-paired guanine residues. Quadruplex-prone sequences are found in many regions of human genome and in the telomeres of all eukaryotic organisms. Since small molecules that target G-quadruplexe...

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Autores principales: Pagano, Bruno, Fotticchia, Iolanda, De Tito, Stefano, Mattia, Carlo A., Mayol, Luciano, Novellino, Ettore, Randazzo, Antonio, Giancola, Concetta
Formato: Texto
Lenguaje:English
Publicado: SAGE-Hindawi Access to Research 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2915651/
https://www.ncbi.nlm.nih.gov/pubmed/20725616
http://dx.doi.org/10.4061/2010/247137
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author Pagano, Bruno
Fotticchia, Iolanda
De Tito, Stefano
Mattia, Carlo A.
Mayol, Luciano
Novellino, Ettore
Randazzo, Antonio
Giancola, Concetta
author_facet Pagano, Bruno
Fotticchia, Iolanda
De Tito, Stefano
Mattia, Carlo A.
Mayol, Luciano
Novellino, Ettore
Randazzo, Antonio
Giancola, Concetta
author_sort Pagano, Bruno
collection PubMed
description Guanine-rich nucleic acid sequences can adopt G-quadruplex structures stabilized by layers of four Hoogsteen-paired guanine residues. Quadruplex-prone sequences are found in many regions of human genome and in the telomeres of all eukaryotic organisms. Since small molecules that target G-quadruplexes have been found to be effective telomerase inhibitors, the identification of new specific ligands for G-quadruplexes is emerging as a promising approach to develop new anticancer drugs. Distamycin A is known to bind to AT-rich sequences of duplex DNA, but it has recently been shown to interact also with G-quadruplexes. Here, isothermal titration calorimetry (ITC) and NMR techniques have been employed to characterize the interaction between a dicationic derivative of distamycin A (compound 1) and the [d(TGGGGT)](4) quadruplex. Additionally, to compare the binding behaviour of netropsin and compound 1 to the same target, a calometric study of the interaction between netropsin and [d(TGGGGT)](4) has been performed. Experiments show that netropsin and compound 1 are able to bind to [d(TGGGGT)](4) with good affinity and comparable thermodynamic profiles. In both cases the interactions are entropically driven processes with a small favourable enthalpic contribution. Interestingly, the structural modifications of compound 1 decrease the affinity of the ligand toward the duplex, enhancing the selectivity.
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spelling pubmed-29156512010-08-19 Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4) Pagano, Bruno Fotticchia, Iolanda De Tito, Stefano Mattia, Carlo A. Mayol, Luciano Novellino, Ettore Randazzo, Antonio Giancola, Concetta J Nucleic Acids Research Article Guanine-rich nucleic acid sequences can adopt G-quadruplex structures stabilized by layers of four Hoogsteen-paired guanine residues. Quadruplex-prone sequences are found in many regions of human genome and in the telomeres of all eukaryotic organisms. Since small molecules that target G-quadruplexes have been found to be effective telomerase inhibitors, the identification of new specific ligands for G-quadruplexes is emerging as a promising approach to develop new anticancer drugs. Distamycin A is known to bind to AT-rich sequences of duplex DNA, but it has recently been shown to interact also with G-quadruplexes. Here, isothermal titration calorimetry (ITC) and NMR techniques have been employed to characterize the interaction between a dicationic derivative of distamycin A (compound 1) and the [d(TGGGGT)](4) quadruplex. Additionally, to compare the binding behaviour of netropsin and compound 1 to the same target, a calometric study of the interaction between netropsin and [d(TGGGGT)](4) has been performed. Experiments show that netropsin and compound 1 are able to bind to [d(TGGGGT)](4) with good affinity and comparable thermodynamic profiles. In both cases the interactions are entropically driven processes with a small favourable enthalpic contribution. Interestingly, the structural modifications of compound 1 decrease the affinity of the ligand toward the duplex, enhancing the selectivity. SAGE-Hindawi Access to Research 2010-05-30 /pmc/articles/PMC2915651/ /pubmed/20725616 http://dx.doi.org/10.4061/2010/247137 Text en Copyright © 2010 Bruno Pagano et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Pagano, Bruno
Fotticchia, Iolanda
De Tito, Stefano
Mattia, Carlo A.
Mayol, Luciano
Novellino, Ettore
Randazzo, Antonio
Giancola, Concetta
Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title_full Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title_fullStr Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title_full_unstemmed Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title_short Selective Binding of Distamycin A Derivative to G-Quadruplex Structure [d(TGGGGT)](4)
title_sort selective binding of distamycin a derivative to g-quadruplex structure [d(tggggt)](4)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2915651/
https://www.ncbi.nlm.nih.gov/pubmed/20725616
http://dx.doi.org/10.4061/2010/247137
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