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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The X-linked mental retardation protein OPHN1 interacts with Homer1b/c to control spine endocytic zone positioning and expression of synaptic potentiation
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The X-linked mental retardation protein OPHN1 interacts with Homer1b/c to control spine endocytic zone positioning and expression of synaptic potentiation

机译:X连锁的智力低下蛋白OPHN1与Homer1b / c相互作用以控制脊柱内吞区的定位和突触增强的表达

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At glutamatergic synapses, local endocytic recycling of AMPA receptors (AMPARs) is important for the supply of a mobile pool of AMPARs required for synaptic potentiation. This local recycling of AMPARs critically relies on the presence of an endocytic zone (EZ) near the postsynaptic density (PSD). The precise mechanisms that couple the EZ to the PSD still remain largely elusive, with the large GTPase Dynamin-3 and the multimeric PSD adaptor protein Homer1 as the two main players identified. Here, we demonstrate that a physical interaction between the X-linked mental retardation protein oligophrenin-1 (OPHN1) and Homer1b/c is crucial for the positioning of the EZ adjacent to the PSD, and present evidence that this interaction is important for OPHN1's role in controlling activitydependent strengthening of excitatory synapses in the rat hippocampus. Disruption of the OPHN1-Homer1b/c interaction causes a displacement of EZs from the PSD, along with impaired AMPAR recycling and reduced AMPAR accumulation at synapses, in both basal conditions and conditions that can induce synaptic potentiation. Together, our findings unveil a novel role for OPHN1 as an interaction partner of Homer1b/c in spine EZ positioning, and provide new mechanistic insight into how genetic deficits in OPHN1 can lead to impaired synapse maturation and plasticity.
机译:在谷氨酸能突触中,AMPA受体(AMPAR)的局部内吞再循环对于提供突触增强所需的AMPAR流动池非常重要。 AMPAR的这种局部回收主要依赖于突触后密度(PSD)附近的内吞区(EZ)的存在。将EZ与PSD偶联的精确机制仍然难以捉摸,其中主要的两个参与者是大型GTPase Dynamin-3和多聚PSD衔接子蛋白Homer1。在这里,我们证明X连锁的智力低下蛋白oligophrenin-1(OPHN1)和Homer1b / c之间的物理相互作用对于EZ与PSD相邻的定位至关重要,并且目前的证据表明这种相互作用对OPHN1的作用很重要控制大鼠海马兴奋性突触的活动依赖性增强。在基础条件和可诱导突触增强的条件下,OPHN1-Homer1b / c相互作用的破坏会导致EZ从PSD移位,以及AMPAR循环受损和AMPAR在突触处积累减少。总之,我们的发现揭示了OPHN1作为Homer1b / c在脊柱EZ定位中的相互作用伙伴的新颖作用,并为OPHN1的遗传缺陷如何导致突触成熟和可塑性受损提供了新的机制性见解。

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