Matrix metalloproteinase-7 modulates synaptic vesicle recycling and induces atrophy of neuronal synapses

A Szklarczyk1, K Conant, D F Owens

  • 1Laboratory of Systems Neuroscience, National Institute of Mental Health, National Institutes of Health, Bethesda, MD, USA. aszklar1@jhmi.edu

Neuroscience
|September 11, 2007
PubMed

Insights

Matrix metalloproteinase-7 (MMP-7) inhibits synaptic vesicle recycling and alters presynaptic terminal structure. Elevated MMP-7 may negatively impact neurotransmission, especially during brain inflammation.

Area of Science:

  • Neuroscience
  • Biochemistry
  • Cell Biology

Background:

  • Matrix metalloproteinases (MMPs) are enzymes involved in tissue remodeling.
  • MMP-7, a specific matrix metalloproteinase, is found in the brain.
  • The role of MMP-7 in synaptic function is not well understood.

Purpose of the Study:

  • To investigate the effects of MMP-7 on neuronal structure and function.
  • To determine if MMP-7 impacts presynaptic terminals and neurotransmission.

Main Methods:

  • Recombinant MMP-7 was applied to cultured rat neurons.
  • Vesicular recycling was measured using synaptotagmin 1 antibody uptake and FM4-64 imaging.
  • Synaptic protein abundance was assessed.
  • Electron microscopy was used to examine synaptic ultrastructure.

Main Results:

  • MMP-7 application inhibited vesicular recycling.
  • The abundance of vesicular and active zone proteins at synaptic terminals decreased.
  • Chronic MMP-7 exposure led to synaptic atrophy, characterized by smaller terminals and fewer vesicles.

Conclusions:

  • MMP-7 significantly modulates synaptic vesicle recycling and synaptic ultrastructure.
  • Elevated MMP-7 levels, potentially during brain inflammation, may adversely affect neurotransmission.