Hyperactive locomotion in a Drosophila model is a functional readout for the synaptic abnormalities underlying

Risa Kashima1, Patrick L Redmond1, Prajakta Ghatpande1

  • 1Cardiovascular Research Institute, University of California, San Francisco, San Francisco, CA 94158, USA.

Science Signaling
|May 4, 2017
PubMed

Insights

Fragile X syndrome (FXS) treatments may be advanced by targeting the BMPR2-LIMK pathway. This study shows FXS larval locomotion is a viable readout for screening novel FXS therapeutics.

Area of Science:

  • Neuroscience
  • Genetics
  • Developmental Biology

Background:

  • Fragile X syndrome (FXS) is a leading cause of heritable intellectual disability and autism.
  • FXS results from mutations in the fragile X mental retardation 1 (FMR1) gene, impacting protein synthesis.
  • Effective treatments are limited by a lack of suitable animal models and drug screening readouts.

Purpose of the Study:

  • To investigate the BMPR2-LIMK pathway as a therapeutic target for FXS.
  • To validate larval locomotion as a functional readout for FXS phenotypes.

Main Methods:

  • Utilized Drosophila and mouse models of FXS.
  • Examined the role of the BMPR2-LIMK pathway in synaptic development and locomotion.
  • Assessed genetic and pharmacological interventions targeting this pathway.

Main Results:

  • Augmented larval locomotion was observed in a Drosophila FXS model.
  • Intervention on the BMPR2-LIMK pathway corrected synaptic abnormalities and locomotion deficits in FXS larvae.
  • Hyperactivity in an FXS mouse model was also ameliorated.

Conclusions:

  • The BMPR2-LIMK pathway represents a promising therapeutic target for FXS.
  • Drosophila larval locomotion serves as a quantitative, functional readout for FXS neuromorphology and is suitable for therapeutic screening.

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