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Updated: Mar 3, 2026

A Simple Technique to Assay Locomotor Activity in Drosophila
Published on: February 24, 2023
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.
Abstract:
Fragile X syndrome (FXS) is the most common cause of heritable intellectual disability and autism and affects ~1 in 4000 males and 1 in 8000 females. The discovery of effective treatments for FXS has been hampered by the lack of effective animal models and phenotypic readouts for drug screening. FXS ensues from the epigenetic silencing or loss-of-function mutation of the fragile X mental retardation 1 (FMR1) gene, which encodes an RNA binding protein that associates with and represses the translation of target mRNAs. We previously found that the activation of LIM kinase 1 (LIMK1) downstream of augmented synthesis of bone morphogenetic protein (BMP) type 2 receptor (BMPR2) promotes aberrant synaptic development in mouse and Drosophila models of FXS and that these molecular and cellular markers were correlated in patients with FXS. We report that larval locomotion is augmented in a Drosophila FXS model. Genetic or pharmacological intervention on the BMPR2-LIMK pathway ameliorated the synaptic abnormality and locomotion phenotypes of FXS larvae, as well as hyperactivity in an FXS mouse model. Our study demonstrates that (i) the BMPR2-LIMK pathway is a promising therapeutic target for FXS and (ii) the locomotion phenotype of FXS larvae is a quantitative functional readout for the neuromorphological phenotype associated with FXS and is amenable to the screening novel FXS therapeutics.
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.

