Acute Footshock Stress Induces Time-Dependent Modifications of AMPA/NMDA Protein Expression and AMPA Phosphorylation

Author:

Bonini Daniela1,Mora Cristina1,Tornese Paolo2,Sala Nathalie2,Filippini Alice1,La Via Luca1,Milanese Marco3,Calza Stefano4,Bonanno Gianbattista3,Racagni Giorgio2,Gennarelli Massimo15,Popoli Maurizio2,Musazzi Laura2,Barbon Alessandro1

Affiliation:

1. Biology and Genetic Division, Department of Molecular and Translational Medicine, University of Brescia, 25123 Brescia, Italy

2. Laboratorio di Neuropsicofarmacologia e Neurogenomica Funzionale, Dipartimento di Scienze Farmacologiche e Biomolecolari and CEND, Università degli Studi di Milano, 20133 Milano, Italy

3. Department of Pharmacy, Unit of Pharmacology and Toxicology and Center of Excellence for Biomedical Research, University of Genoa, 16148 Genoa, Italy

4. Unit of Biostatistics and Biomathematics, Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy

5. Genetic Unit, IRCCS Centro San Giovanni di Dio Fatebenefratelli, 25125 Brescia, Italy

Abstract

Clinical studies on patients with stress-related neuropsychiatric disorders reported functional and morphological changes in brain areas where glutamatergic transmission is predominant, including frontal and prefrontal areas. In line with this evidence, several preclinical works suggest that glutamate receptors are targets of both rapid and long-lasting effects of stress. Here we found that acute footshock- (FS-) stress, although inducing no transcriptional and RNA editing alterations of ionotropic AMPA and NMDA glutamate receptor subunits, rapidly and transiently modulates their protein expression, phosphorylation, and localization at postsynaptic spines in prefrontal and frontal cortex. In total extract, FS-stress increased the phosphorylation levels of GluA1 AMPA subunit at Ser845immediately after stress and of GluA2 Ser8802 h after start of stress. At postsynaptic spines, stress induced a rapid decrease of GluA2 expression, together with an increase of its phosphorylation at Ser880, suggesting internalization of GluA2 AMPA containing receptors. GluN1 and GluN2A NMDA receptor subunits were found markedly upregulated in postsynaptic spines, 2 h after start of stress. These results suggest selected time-dependent changes in glutamatergic receptor subunits induced by acute stress, which may suggest early and transient enhancement of AMPA-mediated currents, followed by a transient activation of NMDA receptors.

Publisher

Hindawi Limited

Subject

Clinical Neurology,Neurology

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