Fragile X premutation rCGG repeats impair synaptic growth and synaptic transmission at Drosophila larval

Sajad A Bhat1, Aadil Yousuf1, Zeeshan Mushtaq2

  • 1Department of Biotechnology, University of Kashmir, Srinagar, Jammu and Kashmir 190006, India.

Insights

Fragile X-associated tremor/ataxia syndrome (FXTAS) may stem from early developmental issues. This study reveals CGG repeats in FMR1 premutation carriers disrupt synapse development and function, impacting neurotransmission.

Area of Science:

  • Neuroscience
  • Genetics
  • Developmental Biology

Background:

  • Fragile X-associated tremor/ataxia syndrome (FXTAS) is a late-onset neurodegenerative disorder affecting FMR1 premutation carriers.
  • Pathophysiological processes in FXTAS may originate during early development, necessitating investigation into early abnormalities.
  • Previous research indicates transgenic Drosophila with CGG repeats cause neurodegeneration.

Purpose of the Study:

  • To investigate the impact of CGG repeats on the structure and function of the developing nervous system using a transgenic Drosophila model.
  • To identify early pathological abnormalities induced by CGG repeats relevant to FXTAS pathogenesis.

Main Methods:

  • Utilized transgenic Drosophila expressing CGG repeats in the nervous system.
  • Analyzed larval neuromuscular junctions (NMJs) for structural and functional changes.
  • Performed presynaptic and postsynaptic analyses, including electrophysiology and protein localization studies.

Main Results:

  • Presynaptic CGG repeat expression restricted synaptic growth, reduced bouton numbers, and caused aberrant varicosities at larval NMJs.
  • Synaptic transmission was impaired, evidenced by reduced quantal content, despite normal postsynaptic glutamate receptors and subsynaptic reticulum proteins.
  • A significant percentage of boutons showed reduced Bruchpilot density, a key active zone protein, and potential roles for Basket and Drep-2 were identified.

Conclusions:

  • Synapse perturbation mediated by CGG repeats occurs presynaptically during larval NMJ development.
  • These findings suggest early developmental synapse defects contribute to the neurodegeneration observed in FXTAS.
  • The study implicates specific proteins in mediating CGG repeat-induced active zone defects.

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