Giant ankyrin-G stabilizes somatodendritic GABAergic synapses through opposing endocytosis of GABAA receptors.
GABAA-receptor-based interneuron circuitry is essential for higher order function of the human nervous system and is implicated in schizophrenia, depression, anxiety disorders, and autism. Here we demonstrate that giant ankyrin-G (480-kDa ankyrin-G) promotes stability of somatodendritic GABAergic synapses in vitro and in vivo. Moreover, giant ankyrin-G forms developmentally regulated and cell-type-specific micron-scale domains within extrasynaptic somatodendritic plasma membranes of pyramidal neurons. We further find that giant ankyrin-G promotes GABAergic synapse stability through opposing endocytosis of GABAA receptors, and requires a newly described interaction with GABARAP, a GABAA receptor-associated protein. We thus present a new mechanism for stabilization of GABAergic interneuron synapses and micron-scale organization of extrasynaptic membrane that provides a rationale for studies linking ankyrin-G genetic variation with psychiatric disease and abnormal neurodevelopment.
Duke Scholars
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- Synaptic Membranes
- Receptors, GABA-A
- Pyramidal Cells
- Microtubule-Associated Proteins
- Mice
- Mental Disorders
- Membrane Proteins
- Humans
- GABAergic Neurons
- Endocytosis
Citation
Published In
DOI
EISSN
Publication Date
Volume
Issue
Start / End Page
Location
Related Subject Headings
- Synaptic Membranes
- Receptors, GABA-A
- Pyramidal Cells
- Microtubule-Associated Proteins
- Mice
- Mental Disorders
- Membrane Proteins
- Humans
- GABAergic Neurons
- Endocytosis