TY - JOUR
T1 - Synaptic and extrasynaptic distribution of NMDA receptors in the cortex of Alzheimer's disease patients
AU - Escamilla, Sergio
AU - Badillos Rodríguez, Raquel
AU - Comella i Carnicé, Joan Xavier
AU - Solé Piñol, Montserrat
AU - Pérez-Otaño, Isabel
AU - Mut, Jose V. Sánchez
AU - Sáez-Valero, Javier
AU - Cuchillo-Ibáñez, Inmaculada
PY - 2024
Y1 - 2024
N2 - Synaptic and extrasynaptic distribution of N-methyl-D-aspartate receptors (NMDARs) has not been addressed in the brain from Alzheimer's disease (AD) subjects, despite their contribution to neurodegeneration. We have developed a protocol to isolate synaptic and extrasynaptic membranes from controls and AD frontal cortex. We characterized the distribution of the NMDAR subunits GluN2B, GluN2A, GluN1, and GluN3A, as well as post-translational modifications, such as phosphorylation and glycosylation. Lower levels of synaptic GluN2B and GluN2A were found in AD fractions, while extrasynaptic GluN2B and GluN1 levels were significantly higher; GluN3A distribution remained unaffected in AD. We also identified different glycoforms of GluN2B and GluN2A in extrasynaptic membranes. Synaptic Tyr1472 GluN2B phosphorylation was significantly lower in AD fractions. Reduction of synaptic NMDAR subunits, particularly for GluN2B, is likely to contribute to synaptic transmission failure in AD. Additionally, the increment of extrasynaptic NMDAR subunits could favor the activation of excitotoxicity in AD.
AB - Synaptic and extrasynaptic distribution of N-methyl-D-aspartate receptors (NMDARs) has not been addressed in the brain from Alzheimer's disease (AD) subjects, despite their contribution to neurodegeneration. We have developed a protocol to isolate synaptic and extrasynaptic membranes from controls and AD frontal cortex. We characterized the distribution of the NMDAR subunits GluN2B, GluN2A, GluN1, and GluN3A, as well as post-translational modifications, such as phosphorylation and glycosylation. Lower levels of synaptic GluN2B and GluN2A were found in AD fractions, while extrasynaptic GluN2B and GluN1 levels were significantly higher; GluN3A distribution remained unaffected in AD. We also identified different glycoforms of GluN2B and GluN2A in extrasynaptic membranes. Synaptic Tyr1472 GluN2B phosphorylation was significantly lower in AD fractions. Reduction of synaptic NMDAR subunits, particularly for GluN2B, is likely to contribute to synaptic transmission failure in AD. Additionally, the increment of extrasynaptic NMDAR subunits could favor the activation of excitotoxicity in AD.
KW - Alzheimer's disease
KW - Extrasynaptic
KW - GluN1
KW - GluN2A
KW - GluN2B
KW - GluN3A
KW - Human
KW - NMDA
KW - Tyr1336
KW - Tyr1472
U2 - 10.1002/alz.14125
DO - 10.1002/alz.14125
M3 - Article
C2 - 39450669
SN - 1552-5279
VL - 20
SP - 8231
EP - 8245
JO - Alzheimer's and Dementia
JF - Alzheimer's and Dementia
ER -