Dlx5 and Msx2 regulate mouse anterior neural tube closure through ephrinA5-EphA7

Jangwoo Lee1, Amy Corcoran, Manjong Han

  • 1Department of Cell and Molecular Biology, School of Science and Engineering, Tulane University, New Orleans, Louisiana 70115, USA. jangwool@uci.edu

Insights

Homeodomain transcription factors Dlx5 and Msx2 are crucial for cranial neural tube development. Their combined absence leads to severe defects in embryonic development, including exencephaly and craniofacial abnormalities.

Area of Science:

  • Developmental Biology
  • Genetics
  • Molecular Biology

Background:

  • Homeodomain transcription factors Dlx5 and Msx2 form heterodimers.
  • They regulate embryonic development, including skeletogenesis, and share target genes.
  • Dlx5 acts as a transcriptional activator, while Msx2 functions as a repressor.

Purpose of the Study:

  • To investigate the role of Dlx5 and Msx2 in embryonic development, particularly neural tube formation.
  • To identify downstream targets regulated by the Dlx5-Msx2 heterodimer.
  • To elucidate the mechanism by which Dlx5 and Msx2 control cranial neural tube morphogenesis.

Main Methods:

  • Analysis of Dlx5 and Msx2 null mutant mice.
  • Examination of neural tube and craniofacial morphology.
  • Gene expression analysis of downstream targets, including ephrinA5 and EphA7 isoforms.

Main Results:

  • Dlx5 and Msx2 double null mutants exhibit a high incidence of exencephaly and craniofacial defects.
  • Gene expression overlap of Dlx5 and Msx2 was observed at the neural fold apex.
  • EphrinA5 and a truncated EphA7 isoform are co-regulated by Dlx5 and Msx2, suggesting a role in cell adhesion.

Conclusions:

  • Dlx5 and Msx2 play a critical role in cranial neural tube morphogenesis.
  • These transcription factors regulate cell adhesion through the ephrinA5 and EphA7 pathway.
  • The findings highlight the importance of Dlx5 and Msx2 in coordinating embryonic development.

Related Concept Videos