Lung fibroblasts express a miR-19a-19b-20a sub-cluster to suppress TGF-β-associated fibroblast activation in murine pulmonary fibrosis.
Kunihiko SoumaShigeyuki ShichinoShinichi HashimotoSatoshi UehaTatsuya TsukuiTakuya NakajimaHiroshi I SuzukiFrancis H W ShandYutaka InagakiTakahide NagaseKouji MatsushimaPublished in: Scientific reports (2018)
Lung fibroblasts play a pivotal role in pulmonary fibrosis, a devastating lung disease, by producing extracellular matrix. MicroRNAs (miRNAs) suppress numerous genes post-transcriptionally; however, the roles of miRNAs in activated fibroblasts in fibrotic lungs remain poorly understood. To elucidate these roles, we performed global miRNA-expression profiling of fibroblasts from bleomycin- and silica-induced fibrotic lungs and investigated the functions of miRNAs in activated lung fibroblasts. Clustering analysis of global miRNA-expression data identified miRNA signatures exhibiting increased expression during fibrosis progression. Among these signatures, we found that a miR-19a-19b-20a sub-cluster suppressed TGF-β-induced activation of fibroblasts in vitro. Moreover, to elucidate whether fibroblast-specific intervention against the sub-cluster modulates pathogenic activation of fibroblasts in fibrotic lungs, we intratracheally transferred the sub-cluster-overexpressing fibroblasts into bleomycin-treated lungs. Global transcriptome analysis of the intratracheally transferred fibroblasts revealed that the sub-cluster not only downregulated expression of TGF-β-associated pro-fibrotic genes, including Acta2, Col1a1, Ctgf, and Serpine1, but also upregulated expression of the anti-fibrotic genes Dcn, Igfbp5, and Mmp3 in activated lung fibroblasts. Collectively, these findings indicated that upregulation of the miR-19a-19b-20a sub-cluster expression in lung fibroblasts counteracted TGF-β-associated pathogenic activation of fibroblasts in murine pulmonary fibrosis.
Keyphrases
- extracellular matrix
- pulmonary fibrosis
- poor prognosis
- long non coding rna
- cell proliferation
- genome wide
- idiopathic pulmonary fibrosis
- randomized controlled trial
- transforming growth factor
- long noncoding rna
- dna methylation
- endothelial cells
- single cell
- oxidative stress
- high glucose
- signaling pathway
- genome wide identification
- newly diagnosed
- wound healing
- high speed
- stress induced