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Modified internucleoside linkages for nuclease-resistant oligonucleotides

In the past few years, several drugs derived from nucleic acids have been approved for commercialization and many more are in clinical trials. The sensitivity of these molecules to nuclease digestion in vivo implies the need to exploit resistant non-natural nucleotides. Among all the possible modifi...

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Autores principales: Clavé, Guillaume, Reverte, Maeva, Vasseur, Jean-Jacques, Smietana, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341215/
https://www.ncbi.nlm.nih.gov/pubmed/34458777
http://dx.doi.org/10.1039/d0cb00136h
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author Clavé, Guillaume
Reverte, Maeva
Vasseur, Jean-Jacques
Smietana, Michael
author_facet Clavé, Guillaume
Reverte, Maeva
Vasseur, Jean-Jacques
Smietana, Michael
author_sort Clavé, Guillaume
collection PubMed
description In the past few years, several drugs derived from nucleic acids have been approved for commercialization and many more are in clinical trials. The sensitivity of these molecules to nuclease digestion in vivo implies the need to exploit resistant non-natural nucleotides. Among all the possible modifications, the one concerning the internucleoside linkage is of particular interest. Indeed minor changes to the natural phosphodiester may result in major modifications of the physico-chemical properties of nucleic acids. As this linkage is a key element of nucleic acids’ chemical structures, its alteration can strongly modulate the plasma stability, binding properties, solubility, cell penetration and ultimately biological activity of nucleic acids. Over the past few decades, many research groups have provided knowledge about non-natural internucleoside linkage properties and participated in building biologically active nucleic acid derivatives. The recent renewing interest in nucleic acids as drugs, demonstrated by the emergence of new antisense, siRNA, aptamer and cyclic dinucleotide molecules, justifies the review of all these studies in order to provide new perspectives in this field. Thus, in this review we aim at providing the reader insights into modified internucleoside linkages that have been described over the years whose impact on annealing properties and resistance to nucleases have been evaluated in order to assess their potential for biological applications. The syntheses of modified nucleotides as well as the protocols developed for their incorporation within oligonucleotides are described. Given the intended biological applications, the modifications described in the literature that have not been tested for their resistance to nucleases are not reported.
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spelling pubmed-83412152021-08-26 Modified internucleoside linkages for nuclease-resistant oligonucleotides Clavé, Guillaume Reverte, Maeva Vasseur, Jean-Jacques Smietana, Michael RSC Chem Biol Chemistry In the past few years, several drugs derived from nucleic acids have been approved for commercialization and many more are in clinical trials. The sensitivity of these molecules to nuclease digestion in vivo implies the need to exploit resistant non-natural nucleotides. Among all the possible modifications, the one concerning the internucleoside linkage is of particular interest. Indeed minor changes to the natural phosphodiester may result in major modifications of the physico-chemical properties of nucleic acids. As this linkage is a key element of nucleic acids’ chemical structures, its alteration can strongly modulate the plasma stability, binding properties, solubility, cell penetration and ultimately biological activity of nucleic acids. Over the past few decades, many research groups have provided knowledge about non-natural internucleoside linkage properties and participated in building biologically active nucleic acid derivatives. The recent renewing interest in nucleic acids as drugs, demonstrated by the emergence of new antisense, siRNA, aptamer and cyclic dinucleotide molecules, justifies the review of all these studies in order to provide new perspectives in this field. Thus, in this review we aim at providing the reader insights into modified internucleoside linkages that have been described over the years whose impact on annealing properties and resistance to nucleases have been evaluated in order to assess their potential for biological applications. The syntheses of modified nucleotides as well as the protocols developed for their incorporation within oligonucleotides are described. Given the intended biological applications, the modifications described in the literature that have not been tested for their resistance to nucleases are not reported. RSC 2020-12-08 /pmc/articles/PMC8341215/ /pubmed/34458777 http://dx.doi.org/10.1039/d0cb00136h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Clavé, Guillaume
Reverte, Maeva
Vasseur, Jean-Jacques
Smietana, Michael
Modified internucleoside linkages for nuclease-resistant oligonucleotides
title Modified internucleoside linkages for nuclease-resistant oligonucleotides
title_full Modified internucleoside linkages for nuclease-resistant oligonucleotides
title_fullStr Modified internucleoside linkages for nuclease-resistant oligonucleotides
title_full_unstemmed Modified internucleoside linkages for nuclease-resistant oligonucleotides
title_short Modified internucleoside linkages for nuclease-resistant oligonucleotides
title_sort modified internucleoside linkages for nuclease-resistant oligonucleotides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341215/
https://www.ncbi.nlm.nih.gov/pubmed/34458777
http://dx.doi.org/10.1039/d0cb00136h
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