Common molecular pathways mediate long-term potentiation of synaptic excitation and slow synaptic inhibition

被引:130
作者
Huang, CS
Shi, SH
Ule, J
Ruggiu, M
Barker, LA
Darnell, RB
Jan, YN
Jan, LY [1 ]
机构
[1] Univ Calif San Francisco, Howard Hughes Med Inst, San Francisco, CA 94143 USA
[2] Univ Calif San Francisco, Dept Physiol, San Francisco, CA 94143 USA
[3] Univ Calif San Francisco, Dept Biochem, San Francisco, CA 94143 USA
[4] Univ Calif San Francisco, Grad Program Neurosci, San Francisco, CA 94143 USA
[5] Univ Calif San Francisco, Grad Program Oral & Craniofacial Sci, San Francisco, CA 94143 USA
[6] Rockefeller Univ, Howard Hughes Med Inst, New York, NY 10021 USA
[7] Rockefeller Univ, Mol Neurooncol Lab, New York, NY 10021 USA
关键词
D O I
10.1016/j.cell.2005.07.033
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Synaptic plasticity, the cellular correlate for learning and memory, involves signaling cascades in the dendritic spine. Extensive studies have shown that long-term potentiation (LTP) of the excitatory postsynaptic current (EPSC) through glutamate receptors is induced by activation of N-methyl-D-asparate receptor (NMDA-R)-the coincidence detector-and Ca2+/calmodulin-dependent protein kinase II (CaMKII). Here we report that the same signaling pathway in the postsynaptic CA1 pyramidal neuron also causes LTP of the slow inhibitory postsynaptic current (sIPSC) mediated by metabotropic GABA(B) receptors (GABA(B)-Rs) and G protein-activated inwardly rectifying K+ (GIRK) channels, both residing in dendritic spines as well as shafts. Indicative of intriguing differences in the regulatory mechanisms for excitatory and inhibitory synaptic plasticity, LTP of sIPSC but not EPSC was abolished in mice lacking Nova-2, a neuronal-specific RNA binding protein that is an autoimmune target in paraneoplastic opsoclonus myoclonus ataxia (POMA) patients with latent cancer, reduced inhibitory control of movements, and dementia.
引用
收藏
页码:105 / 118
页数:14
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