Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4-MD2 complex.

Kim, So Yeon; Jeong, Jong-Min; Kim, Soo Jin; Seo, Wonhyo; Kim, Myung-Ho; Choi, Won-Mook; Yoo, Wonbeak; Lee, Jun-Hee et al. · Nat Commun · 2017

basic_science · Level V

Where this comes from

Abstract

Reactive oxygen species (ROS) contribute to the development of non-alcoholic fatty liver disease. ROS generation by infiltrating macrophages involves multiple mechanisms, including Toll-like receptor 4 (TLR4)-mediated NADPH oxidase (NOX) activation. Here, we show that palmitate-stimulated CD11b<sup>+</sup>F4/80<sup>low</sup> hepatic infiltrating macrophages, but not CD11b<sup>+</sup>F4/80<sup>high</sup> Kupffer cells, generate ROS via dynamin-mediated endocytosis of TLR4 and NOX2, independently from MyD88 and TRIF. We demonstrate that differently from LPS-mediated dimerization of the TLR4-MD2 complex, palmitate binds a monomeric TLR4-MD2 complex that triggers endocytosis, ROS generation and increases pro-interleukin-1β expression in macrophages. Palmitate-induced ROS generation in human CD68<sup>low</sup>CD14<sup>high</sup> macrophages is strongly suppressed by inhibition of dynamin. Furthermore, Nox2-deficient mice are protected against high-fat diet-induced hepatic steatosis and insulin resistance. Therefore, endocytosis of TLR4 and NOX2 into macrophages might be a novel therapeutic target for non-alcoholic fatty liver disease.

Medical subject headings