Javascript must be enabled to continue!
CMLD-2 Attenuates Myofibroblast Activation and Bleomycin-Induced Pulmonary Fibrosis in Mice through Antagonizing ELAVL1-Mediated Osteopontin mRNA Stabilization
View through CrossRef
Abstract
Background
Fibroblast-myofibroblasts transition (FMT) is one of the hallmark cellular processes in pulmonary fibrosis. This study is to investigate the effects of CMLD-2 in FMT and pulmonary fibrosis, which antagonizes HuR, a supposedly key regulatory RNA binding protein (RBP).
Methods
HuR or other deferentially expressed RBPs during TGF-β1-induced FMT were analyzed by transcriptomic methods, and further validated
in vitro
or in fibrotic lung specimens. The effects of HuR overexpression, down-regulation or inhibition by an antagonist CMLD-2 were analyzed in FMT or bleomycin-induced experimental lung fibrosis. HuR-targeting RNA and their interactions were analyzed by CLIP-seq.
Results
HuR, hnRNPA1, hnRNPE1, TIA1 and TFRC were significantly up-regulated, while ESRP1, ESRP2 and TTP were significantly down-regulated. Cytoplasmic expression of HuR was activated in IPF lung tissue and rat lungs of bleomycin-induced fibrosis. HuR overexpression induced α-SMA and collagen I expression, increased the proliferation and migration capacities of fibroblasts with or without the stimulation of TGF-β1. HuR knockdown by shRNA inhibited the proliferation, transition, collagen production and migration properties in fibroblasts or in TGF-β1-stimulated myofibroblasts. Combinative analysis of RNA-seq and CLIP-seq data revealed major HuR binding motifs and several HuR-bound, differentially expressed mRNAs in FMT, specifically SPP1 mRNA encoding osteopontin. HuR-mediated SPP1 mRNA stabilization was further validated by RIP-PCR and half-life analysis using SPP1 mutant transcripts. Inhibiting HuR using CMLD-2 attenuated SPP1/osteopontin expression, TGF-β1-induced FMT
in vitro
and bleomycin-induced pulmonary fibrosis in mice. Nuclear-cytoplasmic shuttle of HuR was activated in TGF-β1-induced FMT, which was inhibited by p38MAPK (SB203580) or PKC (Go-6976) inhibition, but not associated with phosphorylation of HuR.
Conclusions
Fibroblast-myofibroblast transition is activated by HuR-SPP1 mRNA interactions, and CMLD-2 is potentiated to be a therapeutic agent targeting HuR for fibroblast-myofibroblast transition and pulmonary fibrosis.
Title: CMLD-2 Attenuates Myofibroblast Activation and Bleomycin-Induced Pulmonary Fibrosis in Mice through Antagonizing ELAVL1-Mediated Osteopontin mRNA Stabilization
Description:
Abstract
Background
Fibroblast-myofibroblasts transition (FMT) is one of the hallmark cellular processes in pulmonary fibrosis.
This study is to investigate the effects of CMLD-2 in FMT and pulmonary fibrosis, which antagonizes HuR, a supposedly key regulatory RNA binding protein (RBP).
Methods
HuR or other deferentially expressed RBPs during TGF-β1-induced FMT were analyzed by transcriptomic methods, and further validated
in vitro
or in fibrotic lung specimens.
The effects of HuR overexpression, down-regulation or inhibition by an antagonist CMLD-2 were analyzed in FMT or bleomycin-induced experimental lung fibrosis.
HuR-targeting RNA and their interactions were analyzed by CLIP-seq.
Results
HuR, hnRNPA1, hnRNPE1, TIA1 and TFRC were significantly up-regulated, while ESRP1, ESRP2 and TTP were significantly down-regulated.
Cytoplasmic expression of HuR was activated in IPF lung tissue and rat lungs of bleomycin-induced fibrosis.
HuR overexpression induced α-SMA and collagen I expression, increased the proliferation and migration capacities of fibroblasts with or without the stimulation of TGF-β1.
HuR knockdown by shRNA inhibited the proliferation, transition, collagen production and migration properties in fibroblasts or in TGF-β1-stimulated myofibroblasts.
Combinative analysis of RNA-seq and CLIP-seq data revealed major HuR binding motifs and several HuR-bound, differentially expressed mRNAs in FMT, specifically SPP1 mRNA encoding osteopontin.
HuR-mediated SPP1 mRNA stabilization was further validated by RIP-PCR and half-life analysis using SPP1 mutant transcripts.
Inhibiting HuR using CMLD-2 attenuated SPP1/osteopontin expression, TGF-β1-induced FMT
in vitro
and bleomycin-induced pulmonary fibrosis in mice.
Nuclear-cytoplasmic shuttle of HuR was activated in TGF-β1-induced FMT, which was inhibited by p38MAPK (SB203580) or PKC (Go-6976) inhibition, but not associated with phosphorylation of HuR.
Conclusions
Fibroblast-myofibroblast transition is activated by HuR-SPP1 mRNA interactions, and CMLD-2 is potentiated to be a therapeutic agent targeting HuR for fibroblast-myofibroblast transition and pulmonary fibrosis.
Related Results
Effect of OTR4120 on pulmonary fibrosis
Effect of OTR4120 on pulmonary fibrosis
Abstract
Background
Acute respiratory distress syndrome (ARDS) can be related to airway remodeling caused by pulmonary fibrosis...
Protective and Therapeutic Effect of Blackberry Extract in Experimental Fibrosis Model
Protective and Therapeutic Effect of Blackberry Extract in Experimental Fibrosis Model
Background: Bleomycin is a chemotherapeutic agent that can be used in many malignancies, but the side effect of pulmonary fibrosis plays a limiting role for treatment. Blackberry h...
Bleomycin induces senescence and repression of DNA repair via downregulation of Rad51
Bleomycin induces senescence and repression of DNA repair via downregulation of Rad51
Abstract
Background
Bleomycin, a potent antitumor agent, is limited in clinical use due to the potential for fatal pulmonary toxicity. The accelerat...
Oxidative cell wall damage mediated by bleomycin-Fe(II) in Saccharomyces cerevisiae
Oxidative cell wall damage mediated by bleomycin-Fe(II) in Saccharomyces cerevisiae
Bleomycin mediates cell wall damage in the yeast Saccharomyces cerevisiae. Bleomycin treatments in the presence of Fe(II) increased the rate of spheroplast formation by lytic enzym...
Impairment of HuR-Mediated FOS mRNA Stabilization in Granulocytes From Myelodysplastic Syndrome Patients.
Impairment of HuR-Mediated FOS mRNA Stabilization in Granulocytes From Myelodysplastic Syndrome Patients.
Abstract
Abstract 2805
Infection is a major cause of death in patients with myelodysplastic syndromes (MDS). Although qualitative and quantitative gra...
Tissue renin angiotensin system in IgA nephropathy
Tissue renin angiotensin system in IgA nephropathy
The inhibition of angiotensin II (AngII) by use of angiotensin converting enzyme (ACE) inhibitor or AngII receptor blocker is effective for prevention of the progression of renal d...
Abstract 283: Osteopontin cleavage fragments drive FGFR1-mediated mammary tumorigenesis
Abstract 283: Osteopontin cleavage fragments drive FGFR1-mediated mammary tumorigenesis
Abstract
Breast cancer is the second leading cause of cancer-related deaths in women in the United States. Over 40,000 women in the U.S. die of breast cancer annuall...
Centella asiatica Extract Attenuates Kidney Fibrosis Through Reducing Mesenchymal Transition and Inflammation in Ureteral Ligation Model in Mice
Centella asiatica Extract Attenuates Kidney Fibrosis Through Reducing Mesenchymal Transition and Inflammation in Ureteral Ligation Model in Mice
Background: Kidney fibrosis is the common final pathway of chronic kidney disease (CKD), and is characterized by inflammation, mesenchymal transition with myofibroblast formation a...

