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February 28, 2026Nature Communications2 citationsOpen Access

Excess FGFR3 signaling in achondroplasia disrupts turnover of resting zone chondrocytes via CREB signaling

NHNanao HorikeSOSeiya OuraSKSaeko Koyamatsu

Key Points

  • This research investigates how excessive FGFR3 signaling affects resting zone chondrocytes in achondroplasia.
  • Created knock-in mice with the achondroplasia mutation
  • Used EdU labeling for cell turnover analysis
  • Performed lineage tracing to study chondrocyte behavior
  • Conducted single-cell RNA sequencing and immunohistochemistry
  • Administered CREB inhibitor 666-15 to assess effects on growth plate
  • Resting zone chondrocytes accumulated due to disrupted turnover
  • Expansion of the resting zone was confirmed through lineage tracing
  • CREB was identified as a key factor impeding stem cell-like properties
  • Administering CREB inhibitor improved growth plate condition and bone length

Abstract

Abstract Achondroplasia, associated with gain-of-function mutations in FGFR3 , causes growth plate cartilage dysfunction, resulting in short-limb dwarfism. However, its precise molecular and cellular mechanisms remain unclear. To address this, we aimed to generate knock-in mice ( Fgfr3 Ach ) harboring the achondroplasia mutation (p.Gly380Arg). In addition to previously reported abnormalities, we observe an expansion of the resting zone. EdU labeling and lineage tracing analyses indicate that disruption of turnover and impairment of stem cell-like behavior of resting zone chondrocytes results in accumulation of cells in the resting zone. Single-cell RNA-seq and immunohistochemical analysis identify a cell cluster that corresponds to the expanded resting zone. Pathway analysis and functional experiments reveal that CREB disrupts stem cell-like properties in resting zone chondrocytes and contributes to dwarfism. Administration of CREB inhibitor 666-15 restores growth plate pathology and bone length. These findings demonstrate that excess FGFR3 signaling disrupts resting zone chondrocyte properties and suggest potential therapeutic targets for achondroplasia.

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Cite This Study

Horike et al. (2026) studied this question.

synapsesocial.com/papers/69a286600a974eb0d3c014achttps://doi.org/10.1038/s41467-026-69507-9
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