Molecular dissection of pro-fibrotic signaling identifies the mechanism underlying IL11-driven fibrosis gene translation, reveals non-specific effects of STAT3 and suggests a new mechanism of action for nintedanib
Widjaja, A. A.; Viswanathan, S.; Dong, J.; Singh, B. K.; Tan, J.; Goh, J. W. T.; Lamb, D.; Shekeran, S. G.; George, B. L.; Schafer, S.; Carling, D.; Adami, E.; Cook, S. A.
Show abstract
In fibroblasts, TGF{beta}1 stimulates IL11 upregulation that leads to an autocrine loop of IL11-dependent pro-fibrotic protein translation. The signalling pathways downstream of IL11 are contentious and both STAT3 and ERK have been implicated. Here we show that TGF{beta}1- or IL11-induced ERK activation is consistently associated with fibrogenesis whereas STAT3 phosphorylation (pSTAT3) is unrelated to fibroblast activation. Surprisingly, recombinant human IL11, which has been used extensively in mouse experiments to infer STAT3 activity downstream of IL11, non-specifically increases pSTAT3 in Il11ra1 null mouse fibroblasts. Pharmacologic inhibition of STAT3 prevents TGF{beta}1-induced fibrogenesis but this effect was found to reflect fibroblast dysfunction due to severe proteotoxic ER stress. In contrast, inhibition of MEK/ERK prevented fibrosis in the absence of ER stress. TGF{beta}1-stimulated ERK/mTOR/P70RSK-driven protein translation was IL11-dependent and selectivity for pro-fibrotic protein synthesis was ascribed to an EPRS-related mechanism. In TGF{beta}1-stimulated fibroblasts, the anti-fibrotic drug nintedanib caused dose-dependent ER stress, reduced pSTAT/pERK and inhibited pro-fibrotic protein translation, similarly to generic STAT3 inhibitors or ER stressors. Pirfenidone, while anti-fibrotic, had no effect on ER stress whereas anti-IL11 inhibited the ERK/mTOR axis while reducing ER stress. These studies discount a specific role for STAT3 in pro-fibrotic signaling, suggest a novel mechanism of action for nintedanib and prioritise further the IL11 pathway as a therapeutic target for fibrosis.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Pyruvate metabolism dictates fibroblast sensitivity to GLS1 inhibition during fibrogenesis 94%
- Loss of Fas-signaling in pro-fibrotic fibroblasts impairs homeostatic fibrosis resolution and promotes persistent pulmonary fibrosis 94%
- Fibroblasts-derived extracellular vesicles contain SFRP1 and mediate pulmonary fibrosis 94%
Similar papers in this journal
- BMP7 promotes cardiomyocyte regeneration 93%
- ΔNp63 drives dysplastic alveolar remodeling and restricts epithelial plasticity upon severe lung injury 93%
- Patient-specific iPSCs carrying an SFTPC mutation reveal the intrinsic alveolar epithelial dysfunction at the inception of interstitial lung disease 92%
Similar papers in this journal
Similar papers in this journal
- Identification of Paired-related Homeobox Protein 1 as a key mesenchymal transcription factor in Idiopathic Pulmonary Fibrosis 94%
- Macrophages promote endothelial-to-mesenchymal transition via MT1-MMP/TGFβ after myocardial infarction 94%
- Nanchangmycin regulates FYN, FAK and ERK to control the fibrotic activity of hepatic stellate cells 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.