Evolutionary conservation analysis reveals a primordial function of STING as a regulator of lipid metabolism via FADS2
- Soumyabrata Guha
- Joanna Re
- Stéphane Grégoire
- Morgane Chemarin
- Adeline Augereau
- Yasmine Messaoud-Nacer
- Pierre Le Hars
- Hanane Chamma
- Victoria Bergas
- Collin McNairy
- Jenny Nguyen
- Jennifer Barrat
- Jean-Paul Pais de Barros
- Arielle Woznica
- Niyazi Acar
- Isabelle K. Vila
- Pierre Boudinot
- Nadine Laguette
2026-08-14
The stimulator of interferon genes (STING) is a pivotal regulator of type I interferon (IFN) responses. Although the IFN system is confined to vertebrates, STING is present across metazoans and in some unicellular eukaryotes, suggesting involvement in distinct functions prior to vertebrate divergence. Here we explore the conservation of STING-mediated regulation of polyunsaturated fatty acid (PUFA) metabolism. We find that STING homologs from vertebrates, invertebrates, and unicellular eukaryotes interact with fatty acid desaturase 2 (FADS2), the rate-limiting enzyme in PUFA metabolism, and influence subsequent functional outputs. Specifically, we show that STING homologs differentially shape cell susceptibility to infection by DNA and RNA viruses independently of the activation of IFN responses, suggesting that STING-mediated metabolic pathway regulation may participate in primitive host defense mechanisms. Thus, we identify STING-mediated metabolic regulation as an evolutionarily conserved feature and a primordial function of STING.