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2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity

The synthesis of oligonucleotides containing 2′-deoxy-2′-fluoro-4′-thioarabinonucleotides is described. 2′-Deoxy-2′-fluoro-5-methyl-4′-thioarabinouridine (4′S-FMAU) was incorporated into 18-mer antisense oligonucleotides (AONs). 4′S-FMAU adopts a predominantly northern sugar conformation. Oligonucle...

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Autores principales: Watts, Jonathan K., Choubdar, Niloufar, Sadalapure, Kashinath, Robert, Francis, Wahba, Alexander S., Pelletier, Jerry, Mario Pinto, B., Damha, Masad J.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1865065/
https://www.ncbi.nlm.nih.gov/pubmed/17284457
http://dx.doi.org/10.1093/nar/gkl1153
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author Watts, Jonathan K.
Choubdar, Niloufar
Sadalapure, Kashinath
Robert, Francis
Wahba, Alexander S.
Pelletier, Jerry
Mario Pinto, B.
Damha, Masad J.
author_facet Watts, Jonathan K.
Choubdar, Niloufar
Sadalapure, Kashinath
Robert, Francis
Wahba, Alexander S.
Pelletier, Jerry
Mario Pinto, B.
Damha, Masad J.
author_sort Watts, Jonathan K.
collection PubMed
description The synthesis of oligonucleotides containing 2′-deoxy-2′-fluoro-4′-thioarabinonucleotides is described. 2′-Deoxy-2′-fluoro-5-methyl-4′-thioarabinouridine (4′S-FMAU) was incorporated into 18-mer antisense oligonucleotides (AONs). 4′S-FMAU adopts a predominantly northern sugar conformation. Oligonucleotides containing 4′S-FMAU, unlike those containing FMAU, were unable to elicit E. coli or human RNase H activity, thus corroborating the hypothesis that RNase H prefers duplexes containing oligonucleotides that can adopt eastern conformations in the antisense strand. The duplex structure and stability of these oligonucleotides was also investigated via circular dichroism (CD)- and UV- binding studies. Replacement of the 4′-oxygen by a sulfur atom resulted in a marked decrease in melting temperature of AON:RNA as well as AON:DNA duplexes. 2′-Deoxy-2′-fluoro-4′-thioarabinouridine (4′S-FAU) was incorporated into 21-mer small interfering RNA (siRNA) and the resulting siRNA molecules were able to trigger RNA interference with good efficiency. Positional effects were explored, and synergy with 2′F-ANA, which has been previously established as a functional siRNA modification, was demonstrated.
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spelling pubmed-18650652007-05-22 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity Watts, Jonathan K. Choubdar, Niloufar Sadalapure, Kashinath Robert, Francis Wahba, Alexander S. Pelletier, Jerry Mario Pinto, B. Damha, Masad J. Nucleic Acids Res Chemistry The synthesis of oligonucleotides containing 2′-deoxy-2′-fluoro-4′-thioarabinonucleotides is described. 2′-Deoxy-2′-fluoro-5-methyl-4′-thioarabinouridine (4′S-FMAU) was incorporated into 18-mer antisense oligonucleotides (AONs). 4′S-FMAU adopts a predominantly northern sugar conformation. Oligonucleotides containing 4′S-FMAU, unlike those containing FMAU, were unable to elicit E. coli or human RNase H activity, thus corroborating the hypothesis that RNase H prefers duplexes containing oligonucleotides that can adopt eastern conformations in the antisense strand. The duplex structure and stability of these oligonucleotides was also investigated via circular dichroism (CD)- and UV- binding studies. Replacement of the 4′-oxygen by a sulfur atom resulted in a marked decrease in melting temperature of AON:RNA as well as AON:DNA duplexes. 2′-Deoxy-2′-fluoro-4′-thioarabinouridine (4′S-FAU) was incorporated into 21-mer small interfering RNA (siRNA) and the resulting siRNA molecules were able to trigger RNA interference with good efficiency. Positional effects were explored, and synergy with 2′F-ANA, which has been previously established as a functional siRNA modification, was demonstrated. Oxford University Press 2007-03 2007-02-06 /pmc/articles/PMC1865065/ /pubmed/17284457 http://dx.doi.org/10.1093/nar/gkl1153 Text en © 2007 The Author(s). This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Watts, Jonathan K.
Choubdar, Niloufar
Sadalapure, Kashinath
Robert, Francis
Wahba, Alexander S.
Pelletier, Jerry
Mario Pinto, B.
Damha, Masad J.
2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title_full 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title_fullStr 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title_full_unstemmed 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title_short 2′-Fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to siRNA activity
title_sort 2′-fluoro-4′-thioarabino-modified oligonucleotides: conformational switches linked to sirna activity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1865065/
https://www.ncbi.nlm.nih.gov/pubmed/17284457
http://dx.doi.org/10.1093/nar/gkl1153
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