Impaired synaptic function in the microglial KARAP/DAP12-deficient mouse

被引:180
作者
Roumier, A
Béchade, C
Poncer, JC
Smalla, KH
Tomasello, E
Vivier, E
Gundelfinger, ED
Triller, A
Bessis, A
机构
[1] INSERM, EMI0224, F-75013 Paris, France
[2] Leibniz Inst Neurobiol, Dept Neurochem & Mol Biol, D-39118 Magdeburg, Germany
[3] CNRS Marseille Luminy, Ctr Immunol, INSERM, F-13288 Marseille 09, France
[4] Ecole Normale Super, INSERM, U497, Lab Biol Cellulaire Synapse Normale & Pathol, F-75230 Paris 05, France
关键词
synapse; microglia; LTP; glutamate receptor; BDNF; hippocampus; postsynaptic density;
D O I
10.1523/JNEUROSCI.2251-04.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Several proteins are expressed in both immune and nervous systems. However, their putative nonimmune functions in the brain remain poorly understood. KARAP/DAP12 is a transmembrane polypeptide associated with cell-surface receptors in hematopoeitic cells. Its mutation in humans induces Nasu-Hakola disease, characterized by presenile dementia and demyelinization. However, alteration of white matter occurs months after the onset of neuropsychiatric symptoms, suggesting that other neuronal alterations occur in the early phases of the disease. We hypothesized that KARAP/DAP12 may impact synaptic function. In mice deficient for KARAP/DAP12 function, long-term potentiation was enhanced and was partly NMDA receptor ( NMDAR) independent. This effect was accompanied by changes in synaptic glutamate receptor content, as detected by the increased rectification of AMPA receptor EPSCs and increased sensitivity of NMDAR EPSCs to ifenprodil. Biochemical analysis of synaptic proteins confirmed these electrophysiological data. In mutants, the AMPA receptor GluR2 subunit expression was decreased only in the postsynaptic densities but not in the whole membrane fraction, demonstrating specific impairment of synaptic receptor accumulation. Alteration of the BNDF-tyrosine kinase receptor B (TrkB) signaling in the mutant was demonstrated by the dramatic decrease of synaptic TrkB with no change in other regulatory or scaffolding proteins. Finally, KARAP/DAP12 was detected only in microglia but not in neurons, astrocytes, or oligodendrocytes. KARAP/DAP12 may thus alter microglial physiology and subsequently synaptic function and plasticity through a novel microglia-neuron interaction.
引用
收藏
页码:11421 / 11428
页数:8
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