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Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers

The introduction of sulfur into the phosphate linkage of chemically synthesized oligonucleotides creates the stereocenters on phosphorus atoms. Researchers have valued the nature of backbone stereochemistry and early on investigated drug properties for the individual stereocenters in dimers or short...

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Autores principales: Duschmalé, Jörg, Schäublin, Adrian, Funder, Erik, Schmidt, Steffen, Kiełpiński, Łukasz J., Nymark, Helle, Jensen, Klaus, Koch, Troels, Duschmalé, Martina, Koller, Erich, Møller, Marianne Ravn, Schadt, Simone, Husser, Christophe, Brink, Andreas, Sewing, Sabine, Minz, Tanja, Wengel, Jesper, Bleicher, Konrad, Li, Meiling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9271985/
https://www.ncbi.nlm.nih.gov/pubmed/35860384
http://dx.doi.org/10.1016/j.omtn.2022.06.010
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author Duschmalé, Jörg
Schäublin, Adrian
Funder, Erik
Schmidt, Steffen
Kiełpiński, Łukasz J.
Nymark, Helle
Jensen, Klaus
Koch, Troels
Duschmalé, Martina
Koller, Erich
Møller, Marianne Ravn
Schadt, Simone
Husser, Christophe
Brink, Andreas
Sewing, Sabine
Minz, Tanja
Wengel, Jesper
Bleicher, Konrad
Li, Meiling
author_facet Duschmalé, Jörg
Schäublin, Adrian
Funder, Erik
Schmidt, Steffen
Kiełpiński, Łukasz J.
Nymark, Helle
Jensen, Klaus
Koch, Troels
Duschmalé, Martina
Koller, Erich
Møller, Marianne Ravn
Schadt, Simone
Husser, Christophe
Brink, Andreas
Sewing, Sabine
Minz, Tanja
Wengel, Jesper
Bleicher, Konrad
Li, Meiling
author_sort Duschmalé, Jörg
collection PubMed
description The introduction of sulfur into the phosphate linkage of chemically synthesized oligonucleotides creates the stereocenters on phosphorus atoms. Researchers have valued the nature of backbone stereochemistry and early on investigated drug properties for the individual stereocenters in dimers or short oligomers. Only very recently, it has become possible to synthesize fully stereodefined antisense oligonucleotides in good yield and purity. Non-bridging phosphorodithioate (PS(2)) introduces second sulfur into the phosphorothioate linkage to remove the chirality of phosphorus atom. Here, we describe the application of symmetrical non-bridging PS(2) linkages in the context of stereodefined locked nucleic acids (LNAs) antisense oligonucleotides with the goal of reducing chiral complexity and, ultimately, resulting in single molecules. In addition, we propose a rather simple strategy to rapidly identify stereodefined gapmers, combining PS(2) and a preferred stereochemistry motif (RSSR), which supports RNase-H-mediated target knockdown. Pharmacological efficacy and metabolic stability are investigated systematically using ApoB as a target sequence, where in vivo data correlate well to what is observed in vitro.
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spelling pubmed-92719852022-07-19 Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers Duschmalé, Jörg Schäublin, Adrian Funder, Erik Schmidt, Steffen Kiełpiński, Łukasz J. Nymark, Helle Jensen, Klaus Koch, Troels Duschmalé, Martina Koller, Erich Møller, Marianne Ravn Schadt, Simone Husser, Christophe Brink, Andreas Sewing, Sabine Minz, Tanja Wengel, Jesper Bleicher, Konrad Li, Meiling Mol Ther Nucleic Acids Original Article The introduction of sulfur into the phosphate linkage of chemically synthesized oligonucleotides creates the stereocenters on phosphorus atoms. Researchers have valued the nature of backbone stereochemistry and early on investigated drug properties for the individual stereocenters in dimers or short oligomers. Only very recently, it has become possible to synthesize fully stereodefined antisense oligonucleotides in good yield and purity. Non-bridging phosphorodithioate (PS(2)) introduces second sulfur into the phosphorothioate linkage to remove the chirality of phosphorus atom. Here, we describe the application of symmetrical non-bridging PS(2) linkages in the context of stereodefined locked nucleic acids (LNAs) antisense oligonucleotides with the goal of reducing chiral complexity and, ultimately, resulting in single molecules. In addition, we propose a rather simple strategy to rapidly identify stereodefined gapmers, combining PS(2) and a preferred stereochemistry motif (RSSR), which supports RNase-H-mediated target knockdown. Pharmacological efficacy and metabolic stability are investigated systematically using ApoB as a target sequence, where in vivo data correlate well to what is observed in vitro. American Society of Gene & Cell Therapy 2022-06-22 /pmc/articles/PMC9271985/ /pubmed/35860384 http://dx.doi.org/10.1016/j.omtn.2022.06.010 Text en © 2022 F.Hoffmann-La Roche AG https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Duschmalé, Jörg
Schäublin, Adrian
Funder, Erik
Schmidt, Steffen
Kiełpiński, Łukasz J.
Nymark, Helle
Jensen, Klaus
Koch, Troels
Duschmalé, Martina
Koller, Erich
Møller, Marianne Ravn
Schadt, Simone
Husser, Christophe
Brink, Andreas
Sewing, Sabine
Minz, Tanja
Wengel, Jesper
Bleicher, Konrad
Li, Meiling
Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title_full Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title_fullStr Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title_full_unstemmed Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title_short Investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate LNA gapmers
title_sort investigating discovery strategies and pharmacological properties of stereodefined phosphorodithioate lna gapmers
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9271985/
https://www.ncbi.nlm.nih.gov/pubmed/35860384
http://dx.doi.org/10.1016/j.omtn.2022.06.010
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