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.

Abstract

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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