NMDA receptor surface trafficking and synaptic subunit composition are developmentally regulated by the extracellular matrix protein reelin

被引:171
作者
Groc, Laurent
Choquet, Daniel
Stephenson, F. Anne
Verrier, Daniele
Manzoni, Olivier J.
Chavis, Pascale
机构
[1] INSERM, Unite862, F-33077 Bordeaux, France
[2] CNRS, UMR 5091, F-33077 Bordeaux, France
[3] Univ London, Sch Pharm, London WC1N 1AX, England
基金
英国生物技术与生命科学研究理事会;
关键词
NMDA receptor; Reelin; surface mobility; development; integrins; hippocampus;
D O I
10.1523/JNEUROSCI.1772-07.2007
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
During postnatal development, changes in the subunit composition of glutamate receptors of the NMDA subtype (NMDARs) are key to the refinement of excitatory synapses. Hypotheses for maturation of synaptic NMDARs include regulation of their expression levels, membrane targeting, and surface movements. In addition, several members of extracellular matrix (ECM) proteins such as Reelin are involved in synaptic plasticity. However, it is not known whether and how ECM proteins regulate synaptic NMDAR maturation. To probe the participation of NMDARs to synaptic currents and NMDARs surface dynamics, we used electrophysiological recordings and single-particle tracking in cultured hippocampal neurons. Our results show that, during maturation, Reelin orchestrates the regulation of subunit composition of synaptic NMDARs and controls the surface mobility of NR2B subunits. During postnatal maturation, we observed a marked decrease of NR1/NR2B receptor participation to NMDAR-mediated synaptic currents concomitant with the accumulation of Reelin at active synapses. Blockade of the function of Reelin prevented the maturation-dependent reduction in NR1/NR2B-mediated synaptic currents. The reduction of NR1/NR2B receptors was not inhibited by blocking synaptic activity but required beta 1-containing integrin receptors. Single-particle tracking showed that inhibition of Reelin decreased the surface mobility of native NR2B-containing NMDARs, whereas their synaptic dwell time increased. Conversely, recombinant Reelin dramatically reduced NR2B-mediated synaptic currents and the time spent by NR2B subunits within synapses. Our data reveal a new mode of control of synaptic NMDAR assembly at postnatal hippocampal synapses and an unprecedented role of ECM proteins in regulating glutamate receptor surface diffusion.
引用
收藏
页码:10165 / 10175
页数:11
相关论文
共 72 条
[1]   Photoinactivation of native AMPA receptors reveals their real-time trafficking [J].
Adesnik, H ;
Nicoll, RA ;
England, PM .
NEURON, 2005, 48 (06) :977-985
[2]   Removal of AMPA receptors (AMPARs) from synapses is preceded by transient endocytosis of extrasynaptic AMPARs [J].
Ashby, MC ;
De La Rue, SA ;
Ralph, GS ;
Uney, J ;
Collingridge, GL ;
Henley, JM .
JOURNAL OF NEUROSCIENCE, 2004, 24 (22) :5172-5176
[3]   Bidirectional synaptic plasticity: from theory to reality [J].
Bear, MF .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY OF LONDON SERIES B-BIOLOGICAL SCIENCES, 2003, 358 (1432) :649-655
[4]   Modulation of synaptic plasticity and memory by Reelin involves differential splicing of the lipoprotein receptor Apoer2 [J].
Beffert, U ;
Weeber, EJ ;
Durudas, A ;
Qiu, SF ;
Masiulis, I ;
Sweatt, JD ;
Li, WP ;
Adelmann, G ;
Frotscher, M ;
Hammer, RE ;
Herz, J .
NEURON, 2005, 47 (04) :567-579
[5]   Regulation of AMPA receptor lateral movements [J].
Borgdorff, AJ ;
Choquet, D .
NATURE, 2002, 417 (6889) :649-653
[6]   ACTIVITY-DEPENDENT DECREASE IN NMDA RECEPTOR RESPONSES DURING DEVELOPMENT OF THE VISUAL-CORTEX [J].
CARMIGNOTO, G ;
VICINI, S .
SCIENCE, 1992, 258 (5084) :1007-1011
[7]   β1-integrins are required for hippocampal AMPA receptor-dependent synaptic transmission, synaptic plasticity, and working memory [J].
Chan, CS ;
Weeber, EJ ;
Zong, L ;
Fuchs, E ;
Sweatt, JD ;
Davis, RL .
JOURNAL OF NEUROSCIENCE, 2006, 26 (01) :223-232
[8]   Visualization of cyclic AMP-regulated presynaptic activity at cerebellar granule cells [J].
Chavis, P ;
Mollard, P ;
Bockaert, J ;
Manzoni, O .
NEURON, 1998, 20 (04) :773-781
[9]   Integrins mediate functional pre- and postsynaptic maturation at a hippocampal synapse [J].
Chavis, P ;
Westbrook, G .
NATURE, 2001, 411 (6835) :317-321
[10]  
CHAVIS P, 2005, SOC NEUR ABSTR, V31, P730