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Publication : Impaired formation of high-order gephyrin oligomers underlies gephyrin dysfunction-associated pathologies.

First Author  Kim S Year  2021
Journal  iScience Volume  24
Issue  2 Pages  102037
PubMed ID  33532714 Mgi Jnum  J:342698
Mgi Id  MGI:6717740 Doi  10.1016/j.isci.2021.102037
Citation  Kim S, et al. (2021) Impaired formation of high-order gephyrin oligomers underlies gephyrin dysfunction-associated pathologies. iScience 24(2):102037
abstractText  Gephyrin is critical for the structure, function, and plasticity of inhibitory synapses. Gephyrin mutations have been linked to various neurological disorders; however, systematic analyses of the functional consequences of these mutations are lacking. Here, we performed molecular dynamics simulations of gephyrin to predict how six reported point mutations might change the structural stability and/or function of gephyrin. Additional in silico analyses revealed that the A91T and G375D mutations reduce the binding free energy of gephyrin oligomer formation. Gephyrin A91T and G375D displayed altered clustering patterns in COS-7 cells and nullified the inhibitory synapse-promoting effect of gephyrin in cultured neurons. However, only the G375D mutation reduced gephyrin interaction with GABAA receptors and neuroligin-2 in mouse brain; it also failed to normalize deficits in GABAergic synapse maintenance and neuronal hyperactivity observed in hippocampal dentate gyrus-specific gephyrin-deficient mice. Our results provide insights into biochemical, cell-biological, and network-activity effects of the pathogenic G375D mutation.
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