Synergy between 15-lipoxygenase and secreted PLA<sub>2</sub> promotes inflammation by formation of TLR4 agonists from extracellular vesicles.

Ha, Van Thai; Lainšček, Duško; Gesslbauer, Bernd; Jarc-Jovičić, Eva; Hyötyläinen, Tuulia; Ilc, Nejc; Lakota, Katja; Tomšič, Matija et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

Where this comes from

Abstract

Damage-associated endogenous molecules induce innate immune response, thus making sterile inflammation medically relevant. Stress-derived extracellular vesicles (stressEVs) released during oxidative stress conditions were previously found to activate Toll-like receptor 4 (TLR4), resulting in expression of a different pattern of immune response proteins in comparison to lipopolysaccharide (LPS), underlying the differences between pathogen-induced and sterile inflammation. Here we report that synergistic activities of 15-lipoxygenase (15-LO) and secreted phospholipase A<sub>2</sub> (sPLA<sub>2</sub>) are needed for the formation of TLR4 agonists, which were identified as lysophospholipids (lysoPLs) with oxidized unsaturated acyl chain. Hydroxy, hydroperoxy, and keto products of 2-arachidonoyl-lysoPI oxidation by 15-LO were identified by mass spectrometry (MS), and they activated the same gene pattern as stressEVs. Extracellular PLA<sub>2</sub> activity was detected in the synovial fluid from rheumatoid arthritis and gout patients. Furthermore, injection of sPLA<sub>2</sub> promoted K/BxN serum-induced arthritis in mice, whereby ankle swelling was partially TLR4 dependent. Results confirm the role of oxidized lysoPL of stressEVs in sterile inflammation that promotes chronic diseases. Both 15-LO and sPLA<sub>2</sub> enzymes are induced during inflammation, which opens the opportunity for therapy without compromising innate immunity against pathogens.

Medical subject headings