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Palmitoylation Controls NMDA Receptor Function and Steroid Sensitivity.

Authors :
Hubalkova, Pavla
Ladislav, Marek
Vyklicky, Vojtech
Smejkalova, Tereza
Krausova, Barbora Hrcka
Kysilov, Bohdan
Krusek, Jan
Naimová, Zaneta
Korinek, Miloslav
Chodounska, Hana
Kudova, Eva
Cerny, Jiri
Vyklicky Jr, Ladislav
Source :
Journal of Neuroscience. 3/10/2021, Vol. 41 Issue 10, p2134-2149. 16p.
Publication Year :
2021

Abstract

NMDARs are ligand-gated ion channels that cause an influx of Na+ and Ca2+ into postsynaptic neurons. The resulting intracellular Ca2+ transient triggers synaptic plasticity. When prolonged, it may induce excitotoxicity, but it may also activate negative feedback to control the activity of NMDARs. Here, we report that a transient rise in intracellular Ca2+ (Ca2+ challenge) increases the sensitivity of NMDARs but not AMPARs/kainate receptors to the endogenous inhibitory neurosteroid 20-oxo-5b-pregnan-3a-yl 3-sulfate and to its synthetic analogs, such as 20-oxo-5b-pregnan-3a-yl 3-hemipimelate (PAhPim). In cultured hippocampal neurons, 30 lM PAhPim had virtually no effect on NMDAR responses; however, following the Ca21 challenge, it inhibited the responses by 62%; similarly, the Ca2+ challenge induced a 3.7-fold decrease in the steroid IC50 on recombinant GluN1/GluN2B receptors. The increase in the NMDAR sensitivity to PAhPim was dependent on three cysteines (C849, C854, and C871) located in the carboxy-terminal domain of the GluN2B subunit, previously identified to be palmitoylated (Hayashi et al., 2009). Our experiments suggested that the Ca2+ challenge induced receptor depalmitoylation, and single-channel analysis revealed that this was accompanied by a 55% reduction in the probability of channel opening. Results of in silico modeling indicate that receptor palmitoylation promotes anchoring of the GluN2B subunit carboxy-terminal domain to the plasma membrane and facilitates channel opening. Depalmitoylation-induced changes in the NMDAR pharmacology explain the neuroprotective effect of PAhPim on NMDA-induced excitotoxicity. We propose that palmitoylation-dependent changes in the NMDAR sensitivity to steroids serve as an acute endogenous mechanism that controls NMDAR activity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
41
Issue :
10
Database :
Academic Search Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
149259018
Full Text :
https://doi.org/10.1523/JNEUROSCI.2654-20.2021