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Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties

Here we describe a DNA analog in which the mesyl (methanesulfonyl) phosphoramidate group is substituted for the natural phosphodiester group at each internucleotidic position. The oligomers show significant advantages over the often-used DNA phosphorothioates in RNA-binding affinity, nuclease stabil...

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Autores principales: Miroshnichenko, S. K., Patutina, O. A., Burakova, E. A., Chelobanov, B. P., Fokina, A. A., Vlassov, V. V., Altman, S., Zenkova, M. A., Stetsenko, D. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6347720/
https://www.ncbi.nlm.nih.gov/pubmed/30622178
http://dx.doi.org/10.1073/pnas.1813376116
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author Miroshnichenko, S. K.
Patutina, O. A.
Burakova, E. A.
Chelobanov, B. P.
Fokina, A. A.
Vlassov, V. V.
Altman, S.
Zenkova, M. A.
Stetsenko, D. A.
author_facet Miroshnichenko, S. K.
Patutina, O. A.
Burakova, E. A.
Chelobanov, B. P.
Fokina, A. A.
Vlassov, V. V.
Altman, S.
Zenkova, M. A.
Stetsenko, D. A.
author_sort Miroshnichenko, S. K.
collection PubMed
description Here we describe a DNA analog in which the mesyl (methanesulfonyl) phosphoramidate group is substituted for the natural phosphodiester group at each internucleotidic position. The oligomers show significant advantages over the often-used DNA phosphorothioates in RNA-binding affinity, nuclease stability, and specificity of their antisense action, which involves activation of cellular RNase H enzyme for hybridization-directed RNA cleavage. Biological activity of the oligonucleotide analog was demonstrated with respect to pro-oncogenic miR-21. A 22-nt anti–miR-21 mesyl phosphoramidate oligodeoxynucleotide specifically decreased the miR-21 level in melanoma B16 cells, induced apoptosis, reduced proliferation, and impeded migration of tumor cells, showing superiority over isosequential phosphorothioate oligodeoxynucleotide in the specificity of its biological effect. Lower overall toxicity compared with phosphorothioate and more efficient activation of RNase H are the key advantages of mesyl phosphoramidate oligonucleotides, which may represent a promising group of antisense therapeutic agents.
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spelling pubmed-63477202019-01-29 Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties Miroshnichenko, S. K. Patutina, O. A. Burakova, E. A. Chelobanov, B. P. Fokina, A. A. Vlassov, V. V. Altman, S. Zenkova, M. A. Stetsenko, D. A. Proc Natl Acad Sci U S A Biological Sciences Here we describe a DNA analog in which the mesyl (methanesulfonyl) phosphoramidate group is substituted for the natural phosphodiester group at each internucleotidic position. The oligomers show significant advantages over the often-used DNA phosphorothioates in RNA-binding affinity, nuclease stability, and specificity of their antisense action, which involves activation of cellular RNase H enzyme for hybridization-directed RNA cleavage. Biological activity of the oligonucleotide analog was demonstrated with respect to pro-oncogenic miR-21. A 22-nt anti–miR-21 mesyl phosphoramidate oligodeoxynucleotide specifically decreased the miR-21 level in melanoma B16 cells, induced apoptosis, reduced proliferation, and impeded migration of tumor cells, showing superiority over isosequential phosphorothioate oligodeoxynucleotide in the specificity of its biological effect. Lower overall toxicity compared with phosphorothioate and more efficient activation of RNase H are the key advantages of mesyl phosphoramidate oligonucleotides, which may represent a promising group of antisense therapeutic agents. National Academy of Sciences 2019-01-22 2019-01-08 /pmc/articles/PMC6347720/ /pubmed/30622178 http://dx.doi.org/10.1073/pnas.1813376116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Miroshnichenko, S. K.
Patutina, O. A.
Burakova, E. A.
Chelobanov, B. P.
Fokina, A. A.
Vlassov, V. V.
Altman, S.
Zenkova, M. A.
Stetsenko, D. A.
Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title_full Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title_fullStr Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title_full_unstemmed Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title_short Mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
title_sort mesyl phosphoramidate antisense oligonucleotides as an alternative to phosphorothioates with improved biochemical and biological properties
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6347720/
https://www.ncbi.nlm.nih.gov/pubmed/30622178
http://dx.doi.org/10.1073/pnas.1813376116
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