Rational design of antisense oligonucleotides modulating the activity of TLR7/8 agonists

Author:

Alharbi Arwaf S123ORCID,Garcin Aurélie J12,Lennox Kim A4,Pradeloux Solène12,Wong Christophe12,Straub Sarah1256,Valentin Roxane12,Pépin Geneviève12,Li Hong-Mei12,Nold Marcel F789ORCID,Nold-Petry Claudia A78ORCID,Behlke Mark A4ORCID,Gantier Michael P12ORCID

Affiliation:

1. Centre for Innate Immunity and Infectious Diseases, Hudson Institute of Medical Research, Clayton, Victoria 3168, Australia

2. Department of Molecular and Translational Science, Monash University, Clayton, Victoria 3800, Australia

3. The Department of Clinical Laboratory Sciences, Faculty of Applied Medical Sciences, Taif University, Turabah 29179, Saudia Arabia

4. Integrated DNA Technologies Inc., Coralville, IA 52241, USA

5. Department of Microbiology and Immunology, The Doherty Institute for Infection and Immunity, The University of Melbourne, Parkville, Victoria 3010, Australia

6. Institute of Innate Immunity, University Hospital Bonn, University of Bonn, Bonn 53127, Germany

7. Ritchie Centre, Hudson Institute of Medical Research, Clayton, Victoria 3168, Australia

8. Department of Paediatrics, Monash University, Clayton, Victoria 3168, Australia

9. Monash Newborn, Monash Children's Hospital, Clayton, Victoria 3168, Australia

Abstract

Abstract Oligonucleotide-based therapeutics have become a reality, and are set to transform management of many diseases. Nevertheless, the modulatory activities of these molecules on immune responses remain incompletely defined. Here, we show that gene targeting 2′-O-methyl (2′OMe) gapmer antisense oligonucleotides (ASOs) can have opposing activities on Toll-Like Receptors 7 and 8 (TLR7/8), leading to divergent suppression of TLR7 and activation of TLR8, in a sequence-dependent manner. Surprisingly, TLR8 potentiation by the gapmer ASOs was blunted by locked nucleic acid (LNA) and 2′-methoxyethyl (2′MOE) modifications. Through a screen of 192 2′OMe ASOs and sequence mutants, we characterized the structural and sequence determinants of these activities. Importantly, we identified core motifs preventing the immunosuppressive activities of 2′OMe ASOs on TLR7. Based on these observations, we designed oligonucleotides strongly potentiating TLR8 sensing of Resiquimod, which preserve TLR7 function, and promote strong activation of phagocytes and immune cells. We also provide proof-of-principle data that gene-targeting ASOs can be selected to synergize with TLR8 agonists currently under investigation as immunotherapies, and show that rational ASO selection can be used to prevent unintended immune suppression of TLR7. Taken together, our work characterizes the immumodulatory effects of ASOs to advance their therapeutic development.

Funder

National Health and Medical Research Council

Australian Research Council

Quebec Fonds de Recherche du Québec

Fielding Foundation Fellowship

Fielding Foundation Innovation Award

Hudson Institute of Medical Research

Publisher

Oxford University Press (OUP)

Subject

Genetics

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