Loading...
Fast Regulation of GABAR Diffusion Dynamics by Nogo-A Signaling.
Fricke, Steffen ; Metzdorf, Kristin ; Ohm, Melanie ; Haak, Stefan ; Heine, Martin ; Korte, Martin ; Zagrebelsky, Marta
Fricke, Steffen
Metzdorf, Kristin
Ohm, Melanie
Haak, Stefan
Heine, Martin
Korte, Martin
Zagrebelsky, Marta
Citations
Altmetric:
Advisors
Editors
Other Contributors
Issue Date
2019-10-15
Submitted date
Files
Other Titles
Abstract
Precisely controlling the excitatory and inhibitory balance is crucial for the stability and information-processing ability of neuronal networks. However, the molecular mechanisms maintaining this balance during ongoing sensory experiences are largely unclear. We show that Nogo-A signaling reciprocally regulates excitatory and inhibitory transmission. Loss of function for Nogo-A signaling through S1PR2 rapidly increases GABAAR diffusion, thereby decreasing their number at synaptic sites and the amplitude of GABAergic mIPSCs at CA3 hippocampal neurons. This increase in GABAAR diffusion rate is correlated with an increase in Ca2+ influx and requires the calcineurin-mediated dephosphorylation of the γ2 subunit at serine 327. These results suggest that Nogo-A signaling rapidly strengthens inhibitory GABAergic transmission by restricting the diffusion dynamics of GABAARs. Together with the observation that Nogo-A signaling regulates excitatory transmission in an opposite manner, these results suggest a crucial role for Nogo-A signaling in modulating the excitation and inhibition balance to restrict synaptic plasticity.
Citation
Cell Rep. 2019 Oct 15;29(3):671-684.e6. doi: 10.1016/j.celrep.2019.09.015.
Publisher
Journal
PubMed ID
PubMed Central ID
Additional Links
Embedded video
Type
Article
Language
en
Description
Series/Report no.
ISSN
2211-1247
EISSN
ISBN
ISMN
Gov't Doc #
Sponsors
License
Attribution-NonCommercial-ShareAlike 4.0 International
