Cdkl5 mutant zebrafish shows skeletal and neuronal alterations mimicking human CDKL5 deficiency disorder

Tatiana Varela1,2, Débora Varela1,2, Gil Martins1,2

  • 1Centre of Marine Sciences, University of Algarve, Faro, Portugal.

Scientific Reports
|June 6, 2022
PubMed

Insights

CDKL5 deficiency disorder (CDD) zebrafish models exhibit microcephaly, impaired skeletal and motor development, and altered neurotransmission. These findings validate zebrafish as a valuable model for studying CDD

Area of Science:

  • Neuroscience
  • Genetics
  • Developmental Biology

Background:

  • CDKL5 deficiency disorder (CDD) is a rare neurodevelopmental condition caused by mutations in the CDKL5 gene.
  • Key features include seizures, cognitive and motor impairments, microcephaly, and skeletal abnormalities.

Purpose of the Study:

  • To characterize the phenotypic, behavioral, and molecular effects of CDKL5 disruption in a zebrafish model.
  • To validate the utility of cdkl5 mutant zebrafish for CDD research.

Main Methods:

  • Generated and analyzed a cdkl5 mutant zebrafish line (sa21938).
  • Assessed phenotypic features (head size, craniofacial cartilage, bone mineralization), motor behavior, and seizure susceptibility.
  • Utilized quantitative PCR to analyze gene expression of neuronal and glutamatergic markers.

Main Results:

  • cdkl5 mutant zebrafish displayed reduced head size (microcephaly), impaired craniofacial and skeletal development.
  • Mutants exhibited reduced motor activity and impaired glutamatergic neurotransmission.
  • Pentylenetetrazole treatment induced seizure-like behavior and increased locomotion in mutants.
  • Neuronal and glutamatergic gene expression was dysregulated in mutant embryos.

Conclusions:

  • Homozygous cdkl5 mutant zebrafish recapitulate key features of CDD, including neurodevelopmental and motor deficits.
  • This zebrafish model is suitable for investigating CDD pathophysiology and potential therapeutic strategies.

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