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Presynaptic induction of heterosynaptic associative plasticity in the mammalian brain

机译:突触前诱导哺乳动物脑中的异突触相关可塑性

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摘要

The induction of associative synaptic plasticity in the mammalian central nervous system classically depends on coincident presynaptic and postsynaptic activity. According to this principle, associative homosynaptic long-term potentiation (LTP) of excitatory synaptic transmission can be induced only if synaptic release occurs during postsynaptic depolarization. In contrast, heterosynaptic plasticity in mammals is considered to rely on activity-independent, non-associative processes. Here we describe a novel mechanism underlying the induction of associative LTP in the lateral amygdala (LA). Simultaneous activation of converging cortical and thalamic afferents specifically induced associative, N-methyl-D-aspartate (NMDA)-receptor-dependent LTP at cortical, but not at thalamic, inputs. Surprisingly, the induction of associative LTP at cortical inputs was completely independent of postsynaptic activity, including depolarization, postsynaptic NMDA receptor activation or an increase in postsynaptic Ca~(2+) concentration, and did not require network activity. LTP expression was mediated by a persistent increase in the presynaptic probability of release at cortical afferents. Our study shows the presynaptic induction and expression of heterosynaptic and associative synaptic plasticity on simultaneous activity of converging afferents. Our data indicate that input specificity of associative LTP can be determined exclusively by presynaptic properties.
机译:哺乳动物中枢神经系统中联想突触可塑性的诱导经典地取决于突触前和突触后活动的同时发生。根据此原理,只有在突触后去极化过程中发生突触释放时,才可以诱导兴奋性突触传递的相关性高突触长时程增强(LTP)。相反,哺乳动物中的异突触可塑性被认为依赖于与活动无关的非结合过程。在这里,我们描述了一种新的机制,在外侧杏仁核(LA)中诱导​​相关LTP。同时激活会聚的皮质和丘脑传入神经,在皮质而非丘脑输入处特异性诱导缔合的N-甲基-D-天冬氨酸(NMDA)-受体依赖性LTP。出人意料的是,在皮质输入端的相关性LTP的诱导完全独立于突触后活动,包括去极化,突触后NMDA受体激活或突触后Ca〜(2+)浓度增加,并且不需要网络活动。 LTP表达是由皮质传入神经突触前释放的可能性持续增加介导的。我们的研究表明异突触和联想突触可塑性的突触前诱导和表达对聚合传入的同时活动。我们的数据表明,联想LTP的输入特异性可以完全由突触前的特性决定。

著录项

  • 来源
    《Nature》 |2003年第6968期|p.841-845|共5页
  • 作者单位

    Friedrich Miescher Institute, Maulbeerstrasse 66, CH-4058 Basel, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 02:57:24

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