7T0Z image
Deposition Date 2021-11-30
Release Date 2022-07-13
Last Version Date 2025-05-21
Entry Detail
PDB ID:
7T0Z
Title:
Complex of GABA-A synaptic receptor with autoimmune antibody Fab175
Biological Source:
Source Organism:
Homo sapiens (Taxon ID: 9606)
Host Organism:
Method Details:
Experimental Method:
Resolution:
3.00 Å
Aggregation State:
PARTICLE
Reconstruction Method:
SINGLE PARTICLE
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Gamma-aminobutyric acid receptor subunit beta-2
Gene (Uniprot):GABRB2
Chain IDs:A, C
Chain Length:340
Number of Molecules:2
Biological Source:Homo sapiens
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Gamma-aminobutyric acid receptor subunit alpha-1
Gene (Uniprot):GABRA1
Chain IDs:B, D
Chain Length:347
Number of Molecules:2
Biological Source:Homo sapiens
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Gamma-aminobutyric acid receptor subunit gamma-2
Gene (Uniprot):GABRG2
Chain IDs:E
Chain Length:394
Number of Molecules:1
Biological Source:Homo sapiens
Polymer Type:polypeptide(L)
Molecule:Fab175 IgG1 heavy chain
Chain IDs:F (auth: H)
Chain Length:245
Number of Molecules:1
Biological Source:Homo sapiens
Polymer Type:polypeptide(L)
Molecule:Fab175 IgG1 light chain
Chain IDs:G (auth: L)
Chain Length:215
Number of Molecules:1
Biological Source:Homo sapiens
Primary Citation
Structural mechanisms of GABA A receptor autoimmune encephalitis.
Cell 185 2469 ? (2022)
PMID: 35803245 DOI: 10.1016/j.cell.2022.06.025

Abstact

Autoantibodies targeting neuronal membrane proteins can cause encephalitis, seizures, and severe behavioral abnormalities. While antibodies for several neuronal targets have been identified, structural details on how they regulate function are unknown. Here we determined cryo-electron microscopy structures of antibodies derived from an encephalitis patient bound to the γ-aminobutyric acid type A (GABAA) receptor. These antibodies induced severe encephalitis by directly inhibiting GABAA function, resulting in nervous-system hyperexcitability. The structures reveal mechanisms of GABAA inhibition and pathology. One antibody directly competes with a neurotransmitter and locks the receptor in a resting-like state. The second antibody targets the subunit interface involved in binding benzodiazepines and antagonizes diazepam potentiation. We identify key residues in these antibodies involved in specificity and affinity and confirm structure-based hypotheses for functional effects using electrophysiology. Together these studies define mechanisms of direct functional antagonism of neurotransmission underlying autoimmune encephalitis in a human patient.

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Protein

Chemical

Disease

Primary Citation of related structures
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