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Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative

Many antiproliferative G-quadruplexes (G4s) arise from the folding of GT-rich strands. Among these, the Thrombin Binding Aptamer (TBA), as a rare example, adopts a monomolecular well-defined G4 structure. Nevertheless, the potential anticancer properties of TBA are severely hampered by its anticoagu...

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Autores principales: Scuotto, Maria, Rivieccio, Elisa, Varone, Alessia, Corda, Daniela, Bucci, Mariarosaria, Vellecco, Valentina, Cirino, Giuseppe, Virgilio, Antonella, Esposito, Veronica, Galeone, Aldo, Borbone, Nicola, Varra, Michela, Mayol, Luciano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652776/
https://www.ncbi.nlm.nih.gov/pubmed/26250112
http://dx.doi.org/10.1093/nar/gkv789
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author Scuotto, Maria
Rivieccio, Elisa
Varone, Alessia
Corda, Daniela
Bucci, Mariarosaria
Vellecco, Valentina
Cirino, Giuseppe
Virgilio, Antonella
Esposito, Veronica
Galeone, Aldo
Borbone, Nicola
Varra, Michela
Mayol, Luciano
author_facet Scuotto, Maria
Rivieccio, Elisa
Varone, Alessia
Corda, Daniela
Bucci, Mariarosaria
Vellecco, Valentina
Cirino, Giuseppe
Virgilio, Antonella
Esposito, Veronica
Galeone, Aldo
Borbone, Nicola
Varra, Michela
Mayol, Luciano
author_sort Scuotto, Maria
collection PubMed
description Many antiproliferative G-quadruplexes (G4s) arise from the folding of GT-rich strands. Among these, the Thrombin Binding Aptamer (TBA), as a rare example, adopts a monomolecular well-defined G4 structure. Nevertheless, the potential anticancer properties of TBA are severely hampered by its anticoagulant action and, consequently, no related studies have appeared so far in the literature. We wish to report here that suitable chemical modifications in the TBA sequence can preserve its antiproliferative over anticoagulant activity. Particularly, we replaced one residue of the TT or TGT loops with a dibenzyl linker to develop seven new quadruplex-forming TBA based sequences (TBA-bs), which were studied for their structural (CD, CD melting, 1D NMR) and biological (fibrinogen, PT and MTT assays) properties. The three-dimensional structures of the TBA-bs modified at T13 (TBA-bs13) or T12 (TBA-bs12), the former endowed with selective antiproliferative activity, and the latter acting as potently as TBA in both coagulation and MTT assays, were further studied by 2D NMR restrained molecular mechanics. The comparative structural analyses indicated that neither the stability, nor the topology of the G4s, but the different localization of the two benzene rings of the linker was responsible for the loss of the antithrombin activity for TBA-bs13.
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spelling pubmed-46527762015-11-25 Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative Scuotto, Maria Rivieccio, Elisa Varone, Alessia Corda, Daniela Bucci, Mariarosaria Vellecco, Valentina Cirino, Giuseppe Virgilio, Antonella Esposito, Veronica Galeone, Aldo Borbone, Nicola Varra, Michela Mayol, Luciano Nucleic Acids Res Chemical Biology and Nucleic Acid Chemistry Many antiproliferative G-quadruplexes (G4s) arise from the folding of GT-rich strands. Among these, the Thrombin Binding Aptamer (TBA), as a rare example, adopts a monomolecular well-defined G4 structure. Nevertheless, the potential anticancer properties of TBA are severely hampered by its anticoagulant action and, consequently, no related studies have appeared so far in the literature. We wish to report here that suitable chemical modifications in the TBA sequence can preserve its antiproliferative over anticoagulant activity. Particularly, we replaced one residue of the TT or TGT loops with a dibenzyl linker to develop seven new quadruplex-forming TBA based sequences (TBA-bs), which were studied for their structural (CD, CD melting, 1D NMR) and biological (fibrinogen, PT and MTT assays) properties. The three-dimensional structures of the TBA-bs modified at T13 (TBA-bs13) or T12 (TBA-bs12), the former endowed with selective antiproliferative activity, and the latter acting as potently as TBA in both coagulation and MTT assays, were further studied by 2D NMR restrained molecular mechanics. The comparative structural analyses indicated that neither the stability, nor the topology of the G4s, but the different localization of the two benzene rings of the linker was responsible for the loss of the antithrombin activity for TBA-bs13. Oxford University Press 2015-09-18 2015-08-06 /pmc/articles/PMC4652776/ /pubmed/26250112 http://dx.doi.org/10.1093/nar/gkv789 Text en © Crown copyright 2015.
spellingShingle Chemical Biology and Nucleic Acid Chemistry
Scuotto, Maria
Rivieccio, Elisa
Varone, Alessia
Corda, Daniela
Bucci, Mariarosaria
Vellecco, Valentina
Cirino, Giuseppe
Virgilio, Antonella
Esposito, Veronica
Galeone, Aldo
Borbone, Nicola
Varra, Michela
Mayol, Luciano
Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title_full Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title_fullStr Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title_full_unstemmed Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title_short Site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of TBA from anticoagulant to antiproliferative
title_sort site specific replacements of a single loop nucleoside with a dibenzyl linker may switch the activity of tba from anticoagulant to antiproliferative
topic Chemical Biology and Nucleic Acid Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652776/
https://www.ncbi.nlm.nih.gov/pubmed/26250112
http://dx.doi.org/10.1093/nar/gkv789
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