Development of Erf-Mediated Craniosynostosis and Pharmacological Amelioration

Angeliki Vogiatzi1,2, Kleoniki Keklikoglou3,4, Konstantinos Makris1

  • 1Medical School, University of Crete, 71003 Heraklion, Crete, Greece.

Insights

ETS2 repressor factor (ERF) insufficiency causes craniosynostosis. Pharmacological enhancement of ERF activity in mice ameliorated this condition, suggesting a potential therapeutic strategy for craniosynostosis.

Area of Science:

  • Molecular Biology
  • Developmental Biology
  • Genetics

Background:

  • ETS2 repressor factor (ERF) is crucial for cranial bone development.
  • ERF insufficiency leads to craniosynostosis (CRS4) in humans and mice.
  • ERF function is regulated by Erk1/2 phosphorylation and nucleo-cytoplasmic shuttling.

Purpose of the Study:

  • To analyze the craniosynostosis phenotype in an Erf-insufficient mouse model.
  • To evaluate pharmacological augmentation of residual Erf activity for disease amelioration.
  • To investigate the potential of modulating the FGFR-RAS-ERK-ERF pathway.

Main Methods:

  • Utilized an Erf-insufficient mouse model to study craniosynostosis onset and progression.
  • Administered Mek1/2 inhibitor (U0126) and nuclear export inhibitor (KPT-330) to enhance Erf activity.
  • Implemented local and systemic drug administration to assess efficacy and minimize toxicity.

Main Results:

  • Erf insufficiency initially compromised frontal bone formation, followed by multisuture synostosis.
  • Pharmacological treatments (U0126, KPT-330) alleviated the craniosynostosis phenotype.
  • Treatments showed minimal adverse effects, indicating a favorable safety profile.

Conclusions:

  • ERF level is a key regulator of cranial bone development.
  • Pharmacological modulation of ERF activity is a potential therapeutic approach for CRS4.
  • This strategy may also benefit other syndromic forms of craniosynostosis involving the FGFR-RAS-ERK-ERF pathway.