Author:
Chaumont Lise,Jouneau Luc,Huetz François,van Muilekom Doret R.,Peruzzi Mathilde,Raffy Claudine,Le Hir Jérôme,Minke Jules,Boudinot Pierre,Collet Bertrand
Abstract
Abstract
Background
Viperin, also known as radical S-adenosyl-methionine domain containing protein 2 (RSAD2), is an interferon-inducible protein that is involved in the innate immune response against a wide array of viruses. In mammals, Viperin exerts its antiviral function through enzymatic conversion of cytidine triphosphate (CTP) into its antiviral analog ddhCTP as well as through interactions with host proteins involved in innate immune signaling and in metabolic pathways exploited by viruses during their life cycle. However, how Viperin modulates the antiviral response in fish remains largely unknown.
Results
For this purpose, we developed a fathead minnow (Pimephales promelas) clonal cell line in which the unique viperin gene has been knocked out by CRISPR/Cas9 genome-editing. In order to decipher the contribution of fish Viperin to the antiviral response and its regulatory role beyond the scope of the innate immune response, we performed a comparative RNA-seq analysis of viperin−/− and wildtype cell lines upon stimulation with recombinant fathead minnow type I interferon.
Conclusions
Our results revealed that Viperin does not exert positive feedback on the canonical type I IFN but acts as a negative regulator of the inflammatory response by downregulating specific pro-inflammatory genes and upregulating repressors of the NF-κB pathway. It also appeared to play a role in regulating metabolic processes, including one carbon metabolism, bone formation, extracellular matrix organization and cell adhesion.
Funder
European Commission
Norges Forskningsråd
Association Nationale de la Recherche et de la Technologie
Publisher
Springer Science and Business Media LLC