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Electroporation of Craniofacial Mesenchyme
Published on: November 28, 2011
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.
Abstract:
ETS2 repressor factor (ERF) insufficiency causes craniosynostosis (CRS4) in humans and mice. ERF is an ETS domain transcriptional repressor regulated by Erk1/2 phosphorylation via nucleo-cytoplasmic shuttling. Here, we analyze the onset and development of the craniosynostosis phenotype in an Erf-insufficient mouse model and evaluate the potential of the residual Erf activity augmented by pharmacological compounds to ameliorate the disease. Erf insufficiency appears to cause an initially compromised frontal bone formation and subsequent multisuture synostosis, reflecting distinct roles of Erf on the cells that give rise to skull and facial bones. We treated animals with Mek1/2 and nuclear export inhibitors, U0126 and KPT-330, respectively, to increase Erf activity by two independent pathways. We implemented both a low dosage locally over the calvaria and a systemic drug administration scheme to evaluate the possible indirect effects from other systems and minimize toxicity. The treatment of mice with either the inhibitors or the administration scheme alleviated the synostosis phenotype with minimal adverse effects. Our data suggest that the ERF level is an important regulator of cranial bone development and that pharmacological modulation of its activity may represent a valid intervention approach both in CRS4 and in other syndromic forms of craniosynostosis mediated by the FGFR-RAS-ERK-ERF pathway.
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.

