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Updated: Oct 11, 2025

Author Spotlight: Isolation and Culture of Primary Synovial Macrophages and Fibroblasts from Murine Arthritis Tissue
Published on: February 24, 2023
Targeting the IL-6-Yap-Snail signalling axis in synovial fibroblasts ameliorates inflammatory arthritis
Rebecca A Symons1, Fabio Colella1, Fraser L Collins1
1Arthritis and Regenerative Medicine Laboratory, Aberdeen Centre for Arthritis and Musculoskeletal Health, Institute of Medical Sciences, University of Aberdeen, Aberdeen, UK.
Objective:
We aimed to understand the role of the transcriptional co-factor Yes-associated protein (Yap) in the molecular pathway underpinning the pathogenic transformation of synovial fibroblasts (SF) in rheumatoid arthritis (RA) to become invasive and cause joint destruction.
Methods:
Synovium from patients with RA and mice with antigen-induced arthritis (AIA) was analysed by immunostaining and qRT-PCR. SF were targeted using Pdgfrα-CreER and Gdf5-Cre mice, crossed with fluorescent reporters for cell tracing and Yap-flox mice for conditional Yap ablation. Fibroblast phenotypes were analysed by flow cytometry, and arthritis severity was assessed by histology. Yap activation was detected using Yap-Tead reporter cells and Yap-Snail interaction by proximity ligation assay. SF invasiveness was analysed using matrigel-coated transwells.
Results:
Yap, its binding partner Snail and downstream target connective tissue growth factor were upregulated in hyperplastic human RA and in mouse AIA synovium, with Yap detected in SF but not macrophages. Lineage tracing showed polyclonal expansion of Pdgfrα-expressing SF during AIA, with predominant expansion of the Gdf5-lineage SF subpopulation descending from the embryonic joint interzone. Gdf5-lineage SF showed increased expression of Yap and adopted an erosive phenotype (podoplanin+Thy-1 cell surface antigen-), invading cartilage and bone. Conditional ablation of Yap in Gdf5-lineage cells or Pdgfrα-expressing fibroblasts ameliorated AIA. Interleukin (IL)-6, but not tumour necrosis factor alpha (TNF-α) or IL-1β, Jak-dependently activated Yap and induced Yap-Snail interaction. SF invasiveness induced by IL-6 stimulation or Snail overexpression was prevented by Yap knockdown, showing a critical role for Yap in SF transformation in RA.
Conclusions:
Our findings uncover the IL-6-Yap-Snail signalling axis in pathogenic SF in inflammatory arthritis.
Insights
The Yes-associated protein (Yap) pathway is crucial for synovial fibroblast invasiveness in rheumatoid arthritis (RA). Targeting this pathway, specifically the IL-6-Yap-Snail axis, can reduce joint destruction in inflammatory arthritis.
Area of Science:
- Rheumatology
- Molecular Biology
- Cell Biology
Background:
- Rheumatoid arthritis (RA) involves synovial fibroblast (SF) transformation leading to joint destruction.
- The molecular mechanisms driving SF pathogenicity in RA require further elucidation.
Purpose of the Study:
- To investigate the role of the transcriptional co-factor Yes-associated protein (Yap) in the pathogenic transformation of SF in RA.
- To identify the molecular signaling pathways involved in SF invasiveness and joint destruction in RA.
Main Methods:
- Analysis of human RA and mouse antigen-induced arthritis (AIA) synovium using immunostaining and qRT-PCR.
- Conditional ablation of Yap in SF using genetic mouse models (Pdgfrα-CreER, Gdf5-Cre, Yap-flox).
- Assessment of SF phenotype, invasiveness, and arthritis severity via flow cytometry, transwell assays, and histology.
Main Results:
- Yap, Snail, and connective tissue growth factor were upregulated in RA and AIA synovium.
- Gdf5-lineage SF exhibited increased Yap expression and an invasive, erosive phenotype.
- Conditional Yap ablation in SF ameliorated arthritis severity.
- Interleukin-6 (IL-6) activated Yap and induced Yap-Snail interaction in a Jak-dependent manner.
Conclusions:
- The IL-6-Yap-Snail signaling axis is identified as a key pathway in pathogenic SF in inflammatory arthritis.
- Yap plays a critical role in SF transformation and invasiveness in RA.
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