Selective postsynaptic co-localization of MCT2 with AMPA receptor GluR2/3 subunits at excitatory synapses exhibiting AMPA receptor trafficking

被引:83
作者
Bergersen, LH
Magistretti, PJ
Pellerin, L
机构
[1] Univ Lausanne, Inst Physiol, CH-1005 Lausanne, Switzerland
[2] Univ Oslo, Inst Anat, Oslo, Norway
[3] Univ Oslo, Ctr Mol Biol & Neurosci, Oslo, Norway
基金
英国医学研究理事会;
关键词
energy metabolism; lactate; monocarboxylate transporter; postsynaptic density; synaptic plasticity;
D O I
10.1093/cercor/bhh138
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
MCT2 is the main neuronal monocarboxylate transporter needed by neurons if they are to use lactate as an additional energy substrate. Previous evidence suggested that some MCT2 could be located in postsynaptic elements of glutamatergic synapses. Using post-embedding electron microscopic immunocytochemistry, it is demonstrated that MCT2 is present at postsynaptic density of asymmetric synapses, in the stratum radiatum of both rat hippocampal CA1 and CA3 regions, as well as at parallel fibre-Purkinje cell synapses in mouse cerebellum. MCT2 levels were significantly lower at mossy fibre synapses on CA3 neurons, and MCT2 was almost absent from symmetric synapses on CA1 pyramidal cells. It could also be demonstrated using quantitative double-labeling immunogold cytochemistry that MCT2 and AMPA receptor GluR2/3 subunits have a similar postsynaptic distribution at asymmetric synapses with high levels expressed within the postsynaptic density. In addition, as for AMPA receptors, a significant proportion of MCT2 is located on vesicular membranes within the postsynaptic spine, forming an intracellular pool available for a putative postsynaptic endo/exocytotic trafficking at these excitatory synapses. Altogether, the data presented provide evidence for MCT2 expression in the postsynaptic density area at specific subsets of glutamatergic synapses, and also suggest that MCT2, like AMPA receptors, could undergo membrane trafficking.
引用
收藏
页码:361 / 370
页数:10
相关论文
共 51 条
[41]   Highly differential expression of the monocarboxylate transporters MCT2 and MCT4 in the developing rat brain [J].
Rafiki, A ;
Boulland, JL ;
Halestrap, AP ;
Ottersen, OP ;
Bergersen, L .
NEUROSCIENCE, 2003, 122 (03) :677-688
[42]   Subunit-specific rules governing AMPA receptor trafficking to synapses in hippocampal pyramidal neurons [J].
Shi, SH ;
Hayashi, Y ;
Esteban, JA ;
Malinow, R .
CELL, 2001, 105 (03) :331-343
[43]   Rapid spine delivery and redistribution of AMPA receptors after synaptic NMDA receptor activation [J].
Shi, SH ;
Hayashi, Y ;
Petralia, RS ;
Zaman, SH ;
Wenthold, RJ ;
Svoboda, K ;
Malinow, R .
SCIENCE, 1999, 284 (5421) :1811-1816
[44]   Different modes of expression of AMPA and NMDA receptors in hippocampal synapses [J].
Takumi, Y ;
Ramírez-León, V ;
Laake, P ;
Rinvik, E ;
Ottersen, OP .
NATURE NEUROSCIENCE, 1999, 2 (07) :618-624
[45]   Synaptic arrangement of glutamate receptors [J].
Takumi, Y ;
Bergersen, L ;
Landsend, AS ;
Rinvik, E ;
Ottersen, OP .
GLUTAMATE SYNAPSE AS A THERAPEUTICAL TARGET: MOLECULAR ORGANIZATION AND PATHOLOGY OF THE GLUTAMATE SYNAPSE, 1998, 116 :105-121
[46]   Revisiting the role of the hippocampal mossy fiber synapse [J].
Urban, NN ;
Henze, DA ;
Barrionuevo, G .
HIPPOCAMPUS, 2001, 11 (04) :408-417
[47]   SIMULTANEOUS DEMONSTRATION OF MULTIPLE ANTIGENS BY INDIRECT IMMUNOFLUORESCENCE OR IMMUNOGOLD STAINING - NOVEL LIGHT AND ELECTRON MICROSCOPICAL DOUBLE AND TRIPLE STAINING METHOD EMPLOYING PRIMARY ANTIBODIES FROM THE SAME SPECIES [J].
WANG, BL ;
LARSSON, LI .
HISTOCHEMISTRY, 1985, 83 (01) :47-56
[48]  
WENTHOLD RJ, 1992, J BIOL CHEM, V267, P501
[49]   Molecular constituents and phosphorylation-dependent regulation of the post-synaptic density [J].
Yamauchi, T .
MASS SPECTROMETRY REVIEWS, 2002, 21 (04) :266-286
[50]   MOLECULAR-CLONING OF A CDNA-ENCODING A NOVEL MEMBER OF THE MOUSE GLUTAMATE RECEPTOR CHANNEL FAMILY [J].
YAMAZAKI, M ;
ARAKI, K ;
SHIBATA, A ;
MISHINA, M .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1992, 183 (02) :886-892