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Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells

A series of 18-mer peptide nucleic acids (PNAs) targeted against micro-RNA miR-210 was synthesised and tested in a cellular system. Unmodified PNAs, R(8)-conjugated PNAs and modified PNAs containing eight arginine residues on the backbone, either as C2-modified (R) or C5-modified (S) monomers, all w...

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Autores principales: Manicardi, Alex, Fabbri, Enrica, Tedeschi, Tullia, Sforza, Stefano, Bianchi, Nicoletta, Brognara, Eleonora, Gambari, Roberto, Marchelli, Rosangela, Corradini, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: WILEY-VCH Verlag 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3401907/
https://www.ncbi.nlm.nih.gov/pubmed/22639449
http://dx.doi.org/10.1002/cbic.201100745
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author Manicardi, Alex
Fabbri, Enrica
Tedeschi, Tullia
Sforza, Stefano
Bianchi, Nicoletta
Brognara, Eleonora
Gambari, Roberto
Marchelli, Rosangela
Corradini, Roberto
author_facet Manicardi, Alex
Fabbri, Enrica
Tedeschi, Tullia
Sforza, Stefano
Bianchi, Nicoletta
Brognara, Eleonora
Gambari, Roberto
Marchelli, Rosangela
Corradini, Roberto
author_sort Manicardi, Alex
collection PubMed
description A series of 18-mer peptide nucleic acids (PNAs) targeted against micro-RNA miR-210 was synthesised and tested in a cellular system. Unmodified PNAs, R(8)-conjugated PNAs and modified PNAs containing eight arginine residues on the backbone, either as C2-modified (R) or C5-modified (S) monomers, all with the same sequence, were compared. Two different models were used for the modified PNAs: one with alternated chiral and achiral monomers and one with a stretch of chiral monomers at the N terminus. The melting temperatures of these derivatives were found to be extremely high and 5 m urea was used to assess differences between the different structures. FACS analysis and qRT-PCR on K562 chronic myelogenous leukaemic cells indicated that arginine-conjugated and backbone-modified PNAs display good cellular uptake, with best performances for the C2-modified series. Resistance to enzymatic degradation was found to be higher for the backbone-modified PNAs, thus enhancing the advantage of using these derivatives rather than conjugated PNAs in the cells in serum, and this effect is magnified in the presence of peptidases such as trypsin. Inhibition of miR-210 activity led to changes in the erythroid differentiation pathway, which were more evident in mithramycin-treated cells. Interestingly, the anti-miR activities differed with use of different PNAs, thus suggesting a role of the substituents not only in the cellular uptake, but also in the mechanism of miR recognition and inactivation. This is the first report relating to the use of backbone-modified PNAs as anti-miR agents. The results clearly indicate that backbone-modified PNAs are good candidates for the development of very efficient drugs based on anti-miR activity, due to their enhanced bioavailabilities, and that overall anti-miR performance is a combination of cellular uptake and RNA binding.
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spelling pubmed-34019072012-07-24 Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells Manicardi, Alex Fabbri, Enrica Tedeschi, Tullia Sforza, Stefano Bianchi, Nicoletta Brognara, Eleonora Gambari, Roberto Marchelli, Rosangela Corradini, Roberto Chembiochem Full Papers A series of 18-mer peptide nucleic acids (PNAs) targeted against micro-RNA miR-210 was synthesised and tested in a cellular system. Unmodified PNAs, R(8)-conjugated PNAs and modified PNAs containing eight arginine residues on the backbone, either as C2-modified (R) or C5-modified (S) monomers, all with the same sequence, were compared. Two different models were used for the modified PNAs: one with alternated chiral and achiral monomers and one with a stretch of chiral monomers at the N terminus. The melting temperatures of these derivatives were found to be extremely high and 5 m urea was used to assess differences between the different structures. FACS analysis and qRT-PCR on K562 chronic myelogenous leukaemic cells indicated that arginine-conjugated and backbone-modified PNAs display good cellular uptake, with best performances for the C2-modified series. Resistance to enzymatic degradation was found to be higher for the backbone-modified PNAs, thus enhancing the advantage of using these derivatives rather than conjugated PNAs in the cells in serum, and this effect is magnified in the presence of peptidases such as trypsin. Inhibition of miR-210 activity led to changes in the erythroid differentiation pathway, which were more evident in mithramycin-treated cells. Interestingly, the anti-miR activities differed with use of different PNAs, thus suggesting a role of the substituents not only in the cellular uptake, but also in the mechanism of miR recognition and inactivation. This is the first report relating to the use of backbone-modified PNAs as anti-miR agents. The results clearly indicate that backbone-modified PNAs are good candidates for the development of very efficient drugs based on anti-miR activity, due to their enhanced bioavailabilities, and that overall anti-miR performance is a combination of cellular uptake and RNA binding. WILEY-VCH Verlag 2012-06-18 2012-05-25 /pmc/articles/PMC3401907/ /pubmed/22639449 http://dx.doi.org/10.1002/cbic.201100745 Text en Copyright © 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Terms and Conditions set out at http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1439-4227/homepage/2268_onlineopen.html.
spellingShingle Full Papers
Manicardi, Alex
Fabbri, Enrica
Tedeschi, Tullia
Sforza, Stefano
Bianchi, Nicoletta
Brognara, Eleonora
Gambari, Roberto
Marchelli, Rosangela
Corradini, Roberto
Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title_full Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title_fullStr Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title_full_unstemmed Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title_short Cellular Uptakes, Biostabilities and Anti-miR-210 Activities of Chiral Arginine-PNAs in Leukaemic K562 Cells
title_sort cellular uptakes, biostabilities and anti-mir-210 activities of chiral arginine-pnas in leukaemic k562 cells
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3401907/
https://www.ncbi.nlm.nih.gov/pubmed/22639449
http://dx.doi.org/10.1002/cbic.201100745
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