Toll-Like-Receptor 5 protects against pulmonary fibrosis by reducing lung dysbiosis
Gleiberman, A.; Invernizzi, R.; Molyneaux, P. L.; Wu, B. G.; Lipinski, Y.; Kugler, M.; Segal, L. N.; Sakamachi, Y.; Wiley, E.; Solis, A.; Johnson, C. G.; Meng, X.; Malphurs, J.; Papas, B.; Mehta, S.; Trempus, C. S.; Thomas, S. Y.; Li, J.-L.; Zhou, L.; karmaus, P. W.; Fessler, M. B.; Garantziotis, S.; Randall, T.; Hussain, S.; Gudkov, A. V.; McGrath, J. A.; Walts, A.; Yang, I. V.; Schwartz, D. A.; Lipinski, J. H.; O'Dwyer, D. N.; Gibson, K.; Kass, D. J.; Zhang, Y.; Kaminski, N.
Show abstract
Idiopathic pulmonary fibrosis (IPF) is a devastating pulmonary disease with no curative treatment other than lung transplantation. IPF results from maladaptive responses to lung epithelial injury, but the underlying mechanisms remain unclear. Here, we show that deficiency in the innate immune receptor, toll-like receptor 5 (TLR5), is associated with IPF in humans and with increased susceptibility to epithelial injury and experimental fibrosis in mice, while activation of lung epithelial TLR5 through a synthetic flagellin analogue protects from experimental fibrosis. Mechanistically, epithelial TLR5 activation induces antimicrobial gene expression and ameliorates dysbiosis after lung injury. In contrast, TLR5 deficiency in mice and IPF patients is associated with lung dysbiosis. Elimination of the microbiome in mice through antibiotics abolishes the protective effect of TLR5 and reconstitution of the microbiome rescues the observed phenotype. In aggregate, TLR5 deficiency is associated with IPF and dysbiosis in humans and in the murine model of pulmonary fibrosis. Furthermore, TLR5 protects against pulmonary fibrosis in mice and this protection is mediated by effects on the microbiome. One-sentence summaryDeficiency in the innate immune receptor TLR5 is a risk factor for pulmonary fibrosis, because TLR5 prevents microbial dysbiosis after lung injury.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Lower Airway Dysbiosis in NTM+ Bronchiectasis is Associated with NET-Predominant Severe Phenotypes 95%
- Circulating BMP9 protects the pulmonary endothelium during inflammation-induced lung injury in mice 95%
- Endogenous Retroviral Elements Generate Pathologic Neutrophils and Elastase Rich Exosomes in Pulmonary Arterial Hypertension 94%
Similar papers in this journal
- Loss of Fas-signaling in pro-fibrotic fibroblasts impairs homeostatic fibrosis resolution and promotes persistent pulmonary fibrosis 97%
- Spatial transcriptomic characterization of COVID-19 pneumonitis identifies immune circuits related to tissue injury 96%
- PAI-1 Interaction with Sortilin Related Receptor-1 is Required for Lung Fibrosis 96%
Similar papers in this journal
- Myeloid-mesenchymal crosstalk drives Arg1-dependent profibrotic metabolism via ornithine in lung fibrosis 96%
- Age-related expression of SARS-CoV-2 priming protease TMPRSS2 in the developing lung 95%
- Targeting C5aR1 signaling reduced neutrophil extracellular traps and ameliorates COVID-19 pathology 95%
Similar papers in this journal
- Vascular Endothelial-derived SPARCL1 Exacerbates Viral Pneumonia Through Pro-Inflammatory Macrophage Activation 97%
- Chronic lung diseases are associated with gene expression programs favoring SARS-CoV-2 entry and severity 96%
- Activation of JUN in fibroblasts promotes pro-fibrotic programme and modulates protective immunity 96%
"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.