4.7 Article

Human CASPR2 Antibodies Reversibly Alter Memory and the CASPR2 Protein Complex

期刊

ANNALS OF NEUROLOGY
卷 91, 期 6, 页码 801-813

出版社

WILEY
DOI: 10.1002/ana.26345

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资金

  1. Plan Nacional de I+D+I
  2. ISCIII- Subdireccion General de Evaluacion y Formento de la Investigacion Sanitaria
  3. Fondo Europeo de Desarrollo Regional (ISCIII-FEDER) [FIS PI20/00197, FIS PI20/00280, FIS PI17/00296, PID2020-119305RB-I00]
  4. Integrative Project of Excellence [PIE 16/00014]
  5. CIBERER [CB15/00010]
  6. La Caixa Foundation [100010434, LCF/PR/HR17/52150001]
  7. Edmon Safra Foundation
  8. Fundacio CELLEX
  9. Spanish Ministry of Economy and Competitiveness through the Severo Ochoa program for Centers of Excellence in RD [CEX2019-000910-S]
  10. CERCA program [871124]
  11. RETICs Oftared [RD16/0008/0014]
  12. FI-AGAUR grant program of the Generalitat de Catalunya [2020FI_B2 00208]
  13. Maria de Maeztu [MDM-2017-0729]
  14. European Academy of Neurology Research Fellowship Program 2019
  15. Basque Government Doctoral Fellowship Program [PRE_2020_2_0219]
  16. Laserlab-Europe [871124]

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IgG antibodies associated with CASPR2 cause reversible memory impairment, inhibit the interaction of CASPR2/TAG1, and decrease the levels of CASPR2 and related proteins.
Objective The encephalitis associated with antibodies against contactin-associated proteinlike 2 (CASPR2) is presumably antibody-mediated, but the antibody effects and whether they cause behavioral alterations are not well known. Here, we used a mouse model of patients' immunoglobulin G (IgG) transfer and super-resolution microscopy to demonstrate the antibody pathogenicity. Methods IgG from patients with anti-CASPR2 encephalitis or healthy controls was infused into the cerebroventricular system of mice. The levels and colocalization of CASPR2 with transient axonal glycoprotein 1 (TAG1) were determined with stimulated emission depletion microscopy (40-70 mu m lateral resolution). Hippocampal clusters of Kv1.1 voltage-gated potassium channels (VGKCs) and GluA1-containing alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors (AMPARs) were quantified with confocal microscopy. Behavioral alterations were assessed with standard behavioral paradigms. Cultured neurons were used to determine the levels of intracellular CASPR2 and TAG1 after exposure to patients' IgG. Results Infusion of patients' IgG, but not controls' IgG, caused memory impairment along with hippocampal reduction of surface CASPR2 clusters and decreased CASPR2/TAG1 colocalization. In cultured neurons, patients' IgG led to an increase of intracellular CASPR2 without affecting TAG1, suggesting selective CASPR2 internalization. Additionally, mice infused with patients' IgG showed decreased levels of Kv1.1 and GluA1 (two CASPR2-regulated proteins). All these alterations and the memory deficit reverted to normal after removing patients' IgG. Interpretation IgG from patients with anti-CASPR2 encephalitis causes reversible memory impairment, inhibits the interaction of CASPR2/TAG1, and decreases the levels of CASPR2 and related proteins (VGKC, AMPAR). These findings fulfill the postulates of antibody-mediated disease and provide a biological basis for antibody-removing treatment approaches. ANN NEUROL 2022

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