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Published on: November 21, 2025
Modulation of NCAM/FGFR1 signaling suppresses EMT program in human proximal tubular epithelial cells
Maja Životić1, Björn Tampe2, Gerhard Müller2
1Institute of Pathology, University of Belgrade-Faculty of Medicine, Belgrade, Serbia.
Abstract:
Neural cell adhesion molecule (NCAM) and fibroblast growth factor receptor 1 (FGFR1) cross-talk have been involved in epithelial-to-mesenchymal transition (EMT) process during carcinogenesis. Since EMT also contributes to maladaptive repair and parenchymal damage during renal fibrosis, we became encouraged to explore the role of NCAM/FGFR1 signaling as initiating or driving forces of EMT program in cultured human proximal tubular epithelial cells (TECs). TECs stimulated with TGF-β1 (10ng/mL) was used as an established in vitro EMT model. TGF-β1 downstream effectors were detected in vitro, as well as in 50 biopsies of different human kidney diseases to explore their in vivo correlation. NCAM/FGFR1 signaling and its modulation by FGFR1 inhibitor PD173074 (100nM) were analyzed by light microscopy, immunolabeling, qRT-PCR and scratch assays. Morphological changes associated with EMT appeared 48h after TGF-ß1 treatment and was clearly apparent after 72 hours, followed by loss of CDH1 (encoding E-Cadherin) and transcriptional induction of SNAI1 (SNAIL), SNAI2 (SLUG), TWIST1, MMP2, MMP9, CDH2 (N-Cadherin), ITGA5 (integrin-α5), ITGB1 (integrin-β1), ACTA2 (α-SMA) and S100A4 (FSP1). Moreover, at the early stage of EMT program (24 hours upon TGF-β1 exposure), transcriptional induction of several NCAM isoforms along with FGFR1 was observed, implicating a mechanistic link between NCAM/FGFR1 signaling and induction of EMT. These assumptions were further supported by the inhibition of the EMT program after specific blocking of FGFR1 signaling by PD173074. Finally, there was evidence for an in vivo TGF-β1 pathway activation in diseased human kidneys and correlation with impaired renal excretory functions. Collectively, NCAM/FGFR1 signaling appears to be involved in the initial phase of TGF-ß1 initiated EMT which can be effectively suppressed by application of FGFR inhibitor.
Insights
Neural cell adhesion molecule (NCAM) and fibroblast growth factor receptor 1 (FGFR1) signaling initiate epithelial-to-mesenchymal transition (EMT) in kidney cells. Blocking FGFR1 suppressed EMT, suggesting therapeutic potential for renal fibrosis.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Epithelial-to-mesenchymal transition (EMT) is implicated in renal fibrosis and parenchymal damage.
- Cross-talk between Neural cell adhesion molecule (NCAM) and Fibroblast growth factor receptor 1 (FGFR1) signaling is linked to carcinogenesis via EMT.
Purpose of the Study:
- To investigate the role of NCAM/FGFR1 signaling in initiating or driving the EMT program in human proximal tubular epithelial cells (TECs).
- To explore the in vivo correlation of TGF-β1 pathway activation in human kidney diseases.
Main Methods:
- Established an in vitro EMT model using human TECs stimulated with TGF-β1.
- Analyzed NCAM/FGFR1 signaling and EMT markers using microscopy, immunolabeling, qRT-PCR, and scratch assays.
- Assessed the effect of FGFR1 inhibitor PD173074 on EMT.
- Examined TGF-β1 pathway activation in 50 human kidney disease biopsies.
Main Results:
- TGF-β1 induced morphological and molecular changes characteristic of EMT in TECs, including loss of E-Cadherin and induction of mesenchymal markers.
- Early-stage EMT involved transcriptional induction of NCAM isoforms and FGFR1, suggesting a mechanistic link.
- FGFR1 inhibition by PD173074 effectively suppressed the EMT program.
- In vivo analysis revealed TGF-β1 pathway activation in diseased kidneys correlated with impaired renal function.
Conclusions:
- NCAM/FGFR1 signaling is involved in the initial phase of TGF-β1-induced EMT in human TECs.
- FGFR1 inhibition presents a potential therapeutic strategy to suppress EMT in renal fibrosis.
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