Mitochondrial electron transport chain is essential for acute inflammatory stress responses in mouse fibroblasts
Abstract
Abstract Fibroblasts are linked to stress responses in a broad number of diseases. Here, we used immortalized mouse embryonic fibroblasts (iMEFs) to elucidate their signaling behavior in response to proinflammatory lipopolysaccharides (LPS) and angiotensin II (Ang-II). To test for the role of the mitochondrial electron transport chain (ETC), iMEFs were cultured in glucose- and galactose-containing media promoting glycolysis and mitochondrial oxidative phosphorylation, respectively. In addition, we used alternative oxidase (AOX), a ubiquinol oxidoreductase that serves as a naturally evolved rescue mechanism in case of ETC disruption. We found that within 24 h of treatment, LPS upregulated a number of proinflammatory genes, namely Tlr4 , Il6 , Tgfb1 , Nlrp3 , Casp1 , and Il1b ; largely, the effect was more pronounced in galactose-containing media and attenuated by AOX. The increase in transcripts resulted partly in elevated cytokine secretion. Twenty-four hours of Ang-II treatment also induced these genes, albeit to a lesser degree and less sensitive to AOX. Cellular oxygen consumption rates (OCRs) were higher in galactose media but remained unaffected by either stimulus. Our results suggest that fibroblasts undergo a similar proinflammatory phenotypic shift in response to different stressors. This response is shaped by ETC activity, which, surprisingly, is not reflected in altered OCRs.
Article Details
Authors (10)
Marie M. Mühlon
Christina Schenkl
Lukas Harder
Luca Giordano
Julian M. Voll
Christian Franke
Diana Dudziak
Institute of Immunology, Jena University Hospital of the Friedrich-Schiller-University
Torsten Doenst
Ralf A. Claus
Marten Szibor