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Opposing effects of PSD-93 and PSD-95 on long-term potentiation and spike timing-dependent plasticity

机译:PSD-93和PSD-95对长期增强和尖峰时序相关可塑性的相反影响

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摘要

The membrane-associated guanylate kinases (MAGUKs) PSD-95, PSD-93 and SAP102 are thought to have crucial roles in both AMPA receptor trafficking and formation of NMDA receptor-associated signalling complexes involved in synaptic plasticity. While PSD-95, PSD-93, and SAP102 appear to have similar roles in AMPA receptor trafficking, it is not known whether these MAGUKs also have functionally similar roles in synaptic plasticity. To explore this issue we examined several properties of basal synaptic transmission in the hippocampal CA1 region of PSD-93 and PSD-95 mutant mice and compared the ability of a number of different synaptic stimulation protocols to induce long-term potentiation (LTP) and long-term depression (LTD) in these mutants. We find that while both AMPA and NMDA receptor-mediated synaptic transmission are normal in PSD-93 mutants, PSD-95 mutant mice exhibit clear deficits in AMPA receptor-mediated transmission. Moreover, in contrast to the facilitation of LTP induction and disruption of LTD observed in PSD-95 mutant mice, PSD-93 mutant mice exhibit deficits in LTP and normal LTD. Our results suggest that PSD-95 has a unique role in AMPA receptor trafficking at excitatory synapses in the hippocampus of adult mice and indicate that PSD-93 and PSD-95 have essentially opposite roles in LTP, perhaps because these MAGUKs form distinct NMDA receptor signalling complexes that differentially regulate the induction of LTP by different patterns of synaptic activity.
机译:膜相关的鸟苷酸激酶(MAGUKs)PSD-95,PSD-93和SAP102被认为在AMPA受体运输和与突触可塑性有关的NMDA受体相关信号复合物的形成中起着关键作用。尽管PSD-95,PSD-93和SAP102在AMPA受体运输中似乎具有相似的作用,但尚不清楚这些MAGUK在突触可塑性中是否也具有功能相似的作用。为了探讨这个问题,我们研究了PSD-93和PSD-95突变小鼠海马CA1区基底突触传递的几个特性,并比较了许多不同突触刺激方案诱导长期增强(LTP)和长时程的能力。这些突变体的长期抑郁症(LTD)。我们发现,虽然AMP-93和NMDA受体介导的突触传递在PSD-93突变体中都是正常的,但PSD-95突变体小鼠在AMPA受体介导的传递中表现出明显的缺陷。此外,与在PSD-95突变小鼠中观察到的促进LTP诱导和LTD破坏相反,PSD-93突变小鼠在LTP和正常LTD中表现出缺陷。我们的结果表明,PSD-95在成年小鼠海马兴奋性突触中的AMPA受体运输中具有独特的作用,并表明PSD-93和PSD-95在LTP中具有基本相反的作用,可能是因为这些MAGUK形成了不同的NMDA受体信号传导通过不同模式的突触活性差异调节LTP诱导的复合物。

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