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首页> 外文期刊>The Journal of Physiology >AMPA receptor subunits define properties of state-dependent synaptic plasticity.
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AMPA receptor subunits define properties of state-dependent synaptic plasticity.

机译:AMPA受体亚基定义了状态依赖性突触可塑性的特性。

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摘要

Many synapses undergo immediate and persistent activity-dependent changes in strength via processes that fall under the umbrella of synaptic plasticity. It is known that this type of synaptic plasticity exhibits an underlying state dependence; that is, as synapses change in strength they move into distinct 'states' that are defined by the mechanism and ability to undergo future plasticity. In this study, we have investigated the molecular mechanisms that underlie state-dependent synaptic plasticity. Using intracellular application of peptides that mimic the C-terminal tail sequences of GluR1 and GluR2 AMPA receptor subtypes, combined with paired recordings of minimal synaptic connections, we have shown that AMPA receptor subtypes present in the membrane at a given time confer some properties of plasticity states. These data show that during synaptic plasticity, AMPA receptor subtypes are differentially stabilized by postsynaptic density proteins in or out of the postsynaptic membrane, and this differential synaptic expression of different AMPA receptor subtypes defines distinct synaptic states.
机译:许多突触通过属于突触可塑性的过程经历即时且持续的强度依赖性活动变化。众所周知,这种类型的突触可塑性表现出潜在的状态依赖性。也就是说,随着突触强度的变化,它们会进入不同的“状态”,这些状态由机制和承受未来可塑性的能力定义。在这项研究中,我们研究了依赖状态的突触可塑性的分子机制。使用模拟GluR1和GluR2 AMPA受体亚型的C末端尾部序列的肽的细胞内应用,结合最小突触连接的配对记录,我们已经证明在给定时间存在于膜中的AMPA受体亚型赋予某些可塑性特性状态。这些数据表明,在突触可塑性期间,AMPA受体亚型由突触后膜内外的突触后密度蛋白差异化稳定,并且不同AMPA受体亚型的这种突触表达定义了不同的突触状态。

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