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首页> 外文期刊>Journal of Neurophysiology >Coexistence of muscarinic long-term depression with electrically induced long-term potentiation and depression at CA3-CA1 synapses.
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Coexistence of muscarinic long-term depression with electrically induced long-term potentiation and depression at CA3-CA1 synapses.

机译:在CA3-CA1突触中,毒蕈碱长期抑制与电诱导的长期增强和抑制共存。

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Our laboratory recently characterized a form of long-term depression (LTD) at CA3-CA1 synapses mediated by M1 muscarinic receptors (mAChRs), termed muscarinic LTD (mLTD). mLTD is both activity and NMDAR dependent, characteristics shared by forms of synaptic plasticity thought to be relevant to learning and memory, including long-term potentiation (LTP) induced by high-frequency stimulation (HFS-LTP) and long-term depression induced by low-frequency stimulation (LFS-LTD). However, it remains unclear whether mLTD can occur sequentially with these electrically induced forms of hippocampal plasticity or whether mLTD might interact with them. The first goal of this study was to examine the interplay of mLTD and HFS-LTP. We report that mLTD expression does not alter subsequent induction of HFS-LTP and, further, at synapses expressing HFS-LTP, mLTD can mediate a novel form of depotentiation. The second goal was to determine whether mLTD would alter LFS-LTD induction and/or expression. Although we show that mLTD is occluded by saturation of LFS-LTD, suggesting mechanistic similarity between these two plasticities, saturation of mLTD does not occlude LFS-LTD. Surprisingly, however, the LFS-LTD that follows cholinergic receptor activation is NMDAR independent, indicating that application of muscarinic agonist induces a change in the induction mechanism required for LFS-LTD. These data demonstrate that mLTD can coexist with electrically induced forms of synaptic plasticity and support the hypothesis that mLTD is one of the mechanisms by which the cholinergic system modulates hippocampal function.
机译:我们的实验室最近鉴定了一种由M1毒蕈碱受体(mAChRs)介导的CA3-CA1突触形成的长期抑郁症(LTD),称为毒蕈碱LTD(mLTD)。 mLTD既依赖于活动,也依赖于NMDAR,突触可塑性具有共同的特征,这些特征与学习和记忆有关,包括高频刺激(HFS-LTP)引起的长期增强(LTP)和高血压引起的长期抑郁低频刺激(LFS-LTD)。但是,尚不清楚mLTD是否可以以这些电诱导形式的海马可塑性顺序发生,或者mLTD是否可能与它们相互作用。这项研究的首要目标是检验mLTD和HFS-LTP的相互作用。我们报告mLTD表达不会改变随后的HFS-LTP诱导,而且,在表达HFS-LTP的突触中,mLTD可以介导新的去势形式。第二个目标是确定mLTD是否会改变LFS-LTD的诱导和/或表达。尽管我们显示mLTD被LFS-LTD饱和所封闭,表明这两个可塑性之间存在机械相似性,但mLTD的饱和并不将LFS-LTD所封闭。然而,令人惊讶的是,跟随胆碱能受体激活的LFS-LTD是NMDAR独立的,这表明毒蕈碱激动剂的应用引起LFS-LTD所需诱导机制的改变。这些数据表明,mLTD可与电诱导形式的突触可塑性共存,并支持以下假设:mLTD是胆碱能系统调节海马功能的机制之一。

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