Controlled sulfur-based engineering confers mouldability to phosphorothioate antisense oligonucleotides

Author:

Genna Vito12ORCID,Iglesias-Fernández Javier2,Reyes-Fraile Laura1,Villegas Nuria1,Guckian Kevin3,Seth Punit4,Wan Brad4,Cabrero Cristina5,Terrazas Montserrat16,Brun-Heath Isabelle1,González Carlos5ORCID,Sciabola Simone3,Villalobos Anabella3,Orozco Modesto17

Affiliation:

1. Mechanisms of Diseases, Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology , Baldiri Reixac 10-12, Barcelona 08028 , Spain

2. NBD | Nostrum Biodiscovery , Baldiri Reixac 10, Barcelona 08028 , Spain

3. Biogen , 225 Binney Street, Cambridge, MA 02142 , USA

4. Ionis Pharmaceuticals Inc. , 2855 Gazelle Court, Carlsbad, CA 92010 , USA

5. Instituto de Química Física Rocasolano , C/ Serrano 119, Madrid 28006 , Spain

6. Department of Inorganic and Organic Chemistry, Section of Organic Chemistry, IBUB, University of Barcelona , Martí i Franquès 1-11, 08028 Barcelona , Spain

7. Department of Biochemistry and Biomedicine, University of Barcelona , Barcelona 08028 , Spain

Abstract

AbstractPhosphorothioates (PS) have proven their effectiveness in the area of therapeutic oligonucleotides with applications spanning from cancer treatment to neurodegenerative disorders. Initially, PS substitution was introduced for the antisense oligonucleotides (PS ASOs) because it confers an increased nuclease resistance meanwhile ameliorates cellular uptake and in-vivo bioavailability. Thus, PS oligonucleotides have been elevated to a fundamental asset in the realm of gene silencing therapeutic methodologies. But, despite their wide use, little is known on the possibly different structural changes PS-substitutions may provoke in DNA·RNA hybrids. Additionally, scarce information and significant controversy exists on the role of phosphorothioate chirality in modulating PS properties. Here, through comprehensive computational investigations and experimental measurements, we shed light on the impact of PS chirality in DNA-based antisense oligonucleotides; how the different phosphorothioate diastereomers impact DNA topology, stability and flexibility to ultimately disclose pro-Sp S and pro-Rp S roles at the catalytic core of DNA Exonuclease and Human Ribonuclease H; two major obstacles in ASOs-based therapies. Altogether, our results provide full-atom and mechanistic insights on the structural aberrations PS-substitutions provoke and explain the origin of nuclease resistance PS-linkages confer to DNA·RNA hybrids; crucial information to improve current ASOs-based therapies.

Funder

European Molecular Biology Organization

Juan de la Cierva-INCORPORACIÓN

Spanish Ministry of Science

Catalan Government AGAUR

Instituto de Salud Carlos III

Fondo Europeo de Desarrollo Regional

H2020 European Commission

MINECO Severo Ochoa Award of Excellence from the Government of Spain

Institució Catalana de Recerca i Estudis Avancats

Publisher

Oxford University Press (OUP)

Subject

Genetics

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