<scp>Glycine Receptor</scp> Autoantibodies Impair Receptor Function and Induce Motor DysfunctionVera Rauschenberger, Carmen Villmann|Annals of Neurology|2020Cited by 48
Disruption of a Structurally Important Extracellular Element in the Glycine Receptor Leads to Decreased Synaptic Integration and Signaling Resulting in Severe Startle DiseaseNatascha Schaefer, Carmen Villmann|Journal of Neuroscience|2017Cited by 17
A Novel Glycine Receptor Variant with Startle Disease Affects Syndapin I and Glycinergic InhibitionGeorg Langlhofer, Carmen Villmann|Journal of Neuroscience|2020Cited by 14
Novel Functional Properties of Missense Mutations in the Glycine Receptor β Subunit in Startle DiseaseInken Piro, Carmen Villmann|Frontiers in Molecular Neuroscience|2021Cited by 11
Disturbances of Ligand Potency and Enhanced Degradation of the Human Glycine Receptor at Affected Positions G160 and T162 Originally Identified in Patients Suffering from HyperekplexiaSinem Atak, Carmen Villmann|Frontiers in Molecular Neuroscience|2015Cited by 10