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Published on: December 21, 2013
Human cerebrospinal fluid monoclonal CASPR2 autoantibodies induce changes in electrophysiology, functional MRI, and
Scott van Hoof1, Jakob Kreye2, César Cordero-Gómez3
1German Center for Neurodegenerative Diseases (DZNE) Berlin, 10117 Berlin, Germany; Department of Neurology and Experimental Neurology, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität Berlin, 10117 Berlin, Germany; Helmholtz Innovation Lab BaoBab (Brain Antibody-omics and B-cell Lab), Berlin, Germany.
Abstract:
Anti-contactin associated protein receptor 2 (CASPR2) encephalitis is a severe autoimmune encephalitis with a variable clinical phenotype including behavioral abnormalities, cognitive decline, epileptic seizures, peripheral nerve hyperexcitability and neuropathic pain. The detailed mechanisms of how CASPR2 autoantibodies lead to synaptic dysfunction and clinical symptoms are largely unknown. Aiming for analyses from the molecular to the clinical level, we isolated antibody-secreting cells from the cerebrospinal fluid of two patients with CASPR2 encephalitis. From these we cloned four anti-CASPR2 human monoclonal autoantibodies (mAbs) with strong binding to brain and peripheral nerves. All were highly hypermutated and mainly of the IgG4 subclass. Mutagenesis studies determined selective binding to the discoidin domain of CASPR2. Surface plasmon resonance revealed affinities with dissociation constants KD in the pico- to nanomolar range. CASPR2 mAbs interrupted the interaction of CASPR2 with its binding partner contactin 2 in vitro and were internalized after binding to CASPR2-expressing cells. Electrophysiological recordings of rat hippocampal slices after stereotactic injection of CASPR2 mAbs showed characteristic afterpotentials following electrical stimulation. In vivo experiments with intracerebroventricular administration of human CASPR2 mAbs into mice and rats showed EEG-recorded brain hyperexcitability but no spontaneous recurrent seizures. Behavioral assessment of infused mice showed a subtle clinical phenotype, mainly affecting sociability. Mouse brain MRI exhibited markedly reduced resting-state functional connectivity without short-term structural changes. Together, the experimental data support the direct pathogenicity of CASPR2 autoantibodies. The minimally invasive EEG and MRI techniques applied here may serve as novel objective, quantifiable tools for improved animal models, in particular for subtle neuropsychiatric phenotypes or repeated measurements.
Insights
Researchers investigated anti-contactin associated protein receptor 2 (CASPR2) encephalitis, revealing that CASPR2 autoantibodies directly cause brain hyperexcitability and subtle behavioral changes in animal models. These findings support the pathogenicity of CASPR2 autoantibodies.
Area of Science:
- Neuroimmunology
- Autoimmune Encephalitis
- Synaptic Dysfunction
Background:
- Anti-contactin associated protein receptor 2 (CASPR2) encephalitis presents with diverse neurological and psychiatric symptoms.
- The precise mechanisms linking CASPR2 autoantibodies to synaptic dysfunction and clinical manifestations remain unclear.
Purpose of the Study:
- To elucidate the molecular and clinical mechanisms of CASPR2 encephalitis.
- To investigate the direct pathogenic role of CASPR2 autoantibodies.
Main Methods:
- Cloning of human monoclonal anti-CASPR2 autoantibodies (mAbs) from patient cerebrospinal fluid.
- In vitro studies on CASPR2-contactin 2 interaction and antibody internalization.
- In vivo electrophysiological (EEG) and MRI studies in rodent models following mAb administration.
Main Results:
- Isolated mAbs bind to the discoidin domain of CASPR2 with high affinity, disrupting its interaction with contactin 2.
- In vivo administration of CASPR2 mAbs induced brain hyperexcitability (EEG) and reduced functional connectivity (MRI) in rodents.
- Mice exhibited subtle behavioral changes, primarily affecting sociability, without spontaneous seizures.
Conclusions:
- Experimental data strongly support the direct pathogenicity of CASPR2 autoantibodies in encephalitis.
- EEG and MRI represent promising objective tools for assessing animal models of CASPR2 encephalitis, particularly for subtle phenotypes.
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