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Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures

The stabilization of G-Quadruplex DNA structures by ligands is a promising strategy for telomerase inhibition in cancer therapy since this enzyme is responsible for the unlimited proliferation of cancer cells. To assess the potential of a compound as a telomerase inhibitor, selectivity for quadruple...

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Autores principales: Ramos, Catarina I. V., Almeida, Susana P., Lourenço, Leandro M. O., Pereira, Patrícia M. R., Fernandes, Rosa, Faustino, M. Amparo F., Tomé, João P. C., Carvalho, Josué, Cruz, Carla, Neves, M. Graça P. M. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412362/
https://www.ncbi.nlm.nih.gov/pubmed/30781675
http://dx.doi.org/10.3390/molecules24040733
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author Ramos, Catarina I. V.
Almeida, Susana P.
Lourenço, Leandro M. O.
Pereira, Patrícia M. R.
Fernandes, Rosa
Faustino, M. Amparo F.
Tomé, João P. C.
Carvalho, Josué
Cruz, Carla
Neves, M. Graça P. M. S.
author_facet Ramos, Catarina I. V.
Almeida, Susana P.
Lourenço, Leandro M. O.
Pereira, Patrícia M. R.
Fernandes, Rosa
Faustino, M. Amparo F.
Tomé, João P. C.
Carvalho, Josué
Cruz, Carla
Neves, M. Graça P. M. S.
author_sort Ramos, Catarina I. V.
collection PubMed
description The stabilization of G-Quadruplex DNA structures by ligands is a promising strategy for telomerase inhibition in cancer therapy since this enzyme is responsible for the unlimited proliferation of cancer cells. To assess the potential of a compound as a telomerase inhibitor, selectivity for quadruplex over duplex DNA is a fundamental attribute, as the drug must be able to recognize quadruplex DNA in the presence of a large amount of duplex DNA, in the cellular nucleus. By using different spectroscopic techniques, such as ultraviolet-visible, fluorescence and circular dichroism, this work evaluates the potential of a series of multicharged phthalocyanines, bearing four or eight positive charges, as G-Quadruplex stabilizing ligands. This work led us to conclude that the existence of a balance between the number and position of the positive charges in the phthalocyanine structure is a fundamental attribute for its selectivity for G-Quadruplex structures over duplex DNA structures. Two of the studied phthalocyanines, one with four peripheral positive charges (ZnPc1) and the other with less exposed eight positive charges (ZnPc4) showed high selectivity and affinity for G-Quadruplex over duplex DNA structures and were able to accumulate in the nucleus of UM-UC-3 bladder cancer cells.
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spelling pubmed-64123622019-04-09 Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures Ramos, Catarina I. V. Almeida, Susana P. Lourenço, Leandro M. O. Pereira, Patrícia M. R. Fernandes, Rosa Faustino, M. Amparo F. Tomé, João P. C. Carvalho, Josué Cruz, Carla Neves, M. Graça P. M. S. Molecules Article The stabilization of G-Quadruplex DNA structures by ligands is a promising strategy for telomerase inhibition in cancer therapy since this enzyme is responsible for the unlimited proliferation of cancer cells. To assess the potential of a compound as a telomerase inhibitor, selectivity for quadruplex over duplex DNA is a fundamental attribute, as the drug must be able to recognize quadruplex DNA in the presence of a large amount of duplex DNA, in the cellular nucleus. By using different spectroscopic techniques, such as ultraviolet-visible, fluorescence and circular dichroism, this work evaluates the potential of a series of multicharged phthalocyanines, bearing four or eight positive charges, as G-Quadruplex stabilizing ligands. This work led us to conclude that the existence of a balance between the number and position of the positive charges in the phthalocyanine structure is a fundamental attribute for its selectivity for G-Quadruplex structures over duplex DNA structures. Two of the studied phthalocyanines, one with four peripheral positive charges (ZnPc1) and the other with less exposed eight positive charges (ZnPc4) showed high selectivity and affinity for G-Quadruplex over duplex DNA structures and were able to accumulate in the nucleus of UM-UC-3 bladder cancer cells. MDPI 2019-02-18 /pmc/articles/PMC6412362/ /pubmed/30781675 http://dx.doi.org/10.3390/molecules24040733 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramos, Catarina I. V.
Almeida, Susana P.
Lourenço, Leandro M. O.
Pereira, Patrícia M. R.
Fernandes, Rosa
Faustino, M. Amparo F.
Tomé, João P. C.
Carvalho, Josué
Cruz, Carla
Neves, M. Graça P. M. S.
Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title_full Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title_fullStr Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title_full_unstemmed Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title_short Multicharged Phthalocyanines as Selective Ligands for G-Quadruplex DNA Structures
title_sort multicharged phthalocyanines as selective ligands for g-quadruplex dna structures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412362/
https://www.ncbi.nlm.nih.gov/pubmed/30781675
http://dx.doi.org/10.3390/molecules24040733
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