Disrupted AMPA Receptor Function upon Genetic- or Antibody-Mediated Loss of Autism-Associated CASPR2

Dominique Fernandes1,2,3, Sandra D Santos1, Ester Coutinho4

  • 1Synapse Biology Group, CNC-Centre for Neuroscience and Cell Biology, University of Coimbra, 3004-504 Coimbra, Portugal.

Insights

Contactin-associated protein 2 (CASPR2) is crucial for brain function, impacting synaptic plasticity and excitatory transmission. Loss of CASPR2 or antibodies against it disrupt brain function, linking it to neuropsychiatric and neurological disorders.

Area of Science:

  • Neuroscience
  • Genetics
  • Immunology

Background:

  • Neuropsychiatric disorders share genetic links, with CNTNAP2 mutations associated with autism, schizophrenia, and intellectual disability.
  • Contactin-associated protein 2 (CASPR2) antibodies are found in patients with neurological disorders like limbic encephalitis.

Purpose of the Study:

  • Investigate the pathogenic mechanisms of CASPR2 dysfunction in neuropsychiatric and neurological disorders.
  • Determine the role of CASPR2 in synaptic function and plasticity.

Main Methods:

  • Examined Caspr2 expression in cortical excitatory synapses.
  • Silenced Caspr2 expression in vitro and in vivo.
  • Assessed the impact of Caspr2 loss on AMPA receptor expression and function.
  • Studied the effects of patient-derived CASPR2 antibodies on synaptic transmission.

Main Results:

  • Caspr2 silencing reduced synaptic AMPA receptor expression and currents.
  • Loss of Caspr2 impaired synaptic scaling and experience-dependent plasticity in the visual cortex.
  • Patient CASPR2 antibodies decreased dendritic Caspr2 levels, disrupted AMPA receptor trafficking, and perturbed excitatory transmission.

Conclusions:

  • CNTNAP2 mutations may alter AMPA receptor function and synaptic plasticity, contributing to neuropsychiatric disorders.
  • Anti-CASPR2 antibodies impair cortical excitatory transmission, highlighting their role in neurological conditions.

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