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Human lung myofibroblast TGFβ1-dependent Smad2/3 signalling is Ca(2+)-dependent and regulated by KCa3.1 K(+) channels
Katy M Roach1, Carol Feghali-Bostwick2, Heike Wulff3
1Department of Infection, Immunity and Inflammation, Institute for Lung Health, University of Leicester, Glenfield Hospital, Groby Road, Leicester, LE3 9QP UK.
Background:
Idiopathic pulmonary fibrosis (IPF) is a common and invariably lethal interstitial lung disease with poorly effective therapy. Blockade of the K(+) channel KCa3.1 reduces constitutive α-SMA and Smad2/3 nuclear translocation in IPF-derived human lung myofibroblasts (HLMFs), and inhibits several transforming growth factor beta 1 (TGFβ1)-dependent cell processes. We hypothesized that KCa3.1-dependent cell processes also regulate the TGFβ1-dependent Smad2/3 signalling pathway in HLMFs. HLMFs obtained from non-fibrotic controls (NFC) and IPF lungs were grown in vitro and examined for αSMA expression by immunofluorescence, RT-PCR, and flow cytometry. Two specific and distinct KCa3.1 blockers (TRAM-34 200 nM and ICA-17043 [Senicapoc] 100 nM) were used to determine their effects on TGFβ1-dependent signalling. Expression of phosphorylated and total Smad2/3 following TGFβ1 stimulation was determined by Western blot and Smad2/3 nuclear translocation by immunofluorescence.
Results:
KCa3.1 block attenuated TGFβ1-dependent Smad2/3 phosphorylation and nuclear translocation, and this was mimicked by lowering the extracellular Ca(2+) concentration. KCa3.1 block also inhibited Smad2/3-dependent gene transcription (αSMA, collagen type I), inhibited KCa3.1 mRNA expression, and attenuated TGFβ1-dependent αSMA protein expression.
Conclusions:
KCa3.1 activity regulates TGFβ1-dependent effects in NFC- and IPF-derived primary HLMFs through the regulation of the TGFβ1/Smad signalling pathway, with promotion of downstream gene transcription and protein expression. KCa3.1 blockers may offer a novel approach to treating IPF.
Insights
Blockading the KCa3.1 channel in human lung myofibroblasts inhibits TGFβ1 signaling, reducing fibrosis markers. This suggests KCa3.1 blockers could be a novel therapy for idiopathic pulmonary fibrosis (IPF).
Area of Science:
- Cell Biology
- Pharmacology
- Pulmonary Medicine
Background:
- Idiopathic pulmonary fibrosis (IPF) is a fatal lung disease with limited treatment options.
- The K(+) channel KCa3.1 is implicated in fibrotic processes.
- Transforming growth factor beta 1 (TGFβ1) signaling is a key driver in IPF.
Purpose of the Study:
- To investigate if KCa3.1 channel activity regulates TGFβ1-dependent Smad2/3 signaling in human lung myofibroblasts (HLMFs).
- To assess the therapeutic potential of KCa3.1 blockers in IPF models.
Main Methods:
- HLMFs from IPF and control lungs were cultured.
- KCa3.1 channel activity was blocked using TRAM-34 and ICA-17043.
- TGFβ1-induced Smad2/3 phosphorylation, nuclear translocation, and gene transcription were analyzed.
- αSMA expression was measured via immunofluorescence, RT-PCR, and flow cytometry.
Main Results:
- KCa3.1 blockade inhibited TGFβ1-dependent Smad2/3 phosphorylation and nuclear translocation.
- Lowering extracellular Ca(2+) mimicked the effects of KCa3.1 block.
- KCa3.1 inhibition reduced Smad2/3-dependent gene transcription (αSMA, collagen type I) and αSMA protein expression.
Conclusions:
- KCa3.1 channel activity is a key regulator of TGFβ1/Smad signaling in HLMFs.
- KCa3.1 blockers attenuate fibrotic processes in vitro.
- Targeting KCa3.1 may represent a novel therapeutic strategy for IPF.
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