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Presynaptic NR2A-containing NMDA receptors implement a high-pass filter synaptic plasticity rule

机译:突触前含NR2A的NMDA受体实现了高通滤波器的突触可塑性规则

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摘要

The detailed characterization of synaptic plasticity has led to the replacement of simple Hebbian rules by more complex rules depending on the order of presynaptic and postsynaptic action potentials. Here, we describe a mechanism endowing a plasticity rule with additional computational complexity—a dependence on the pattern of presynaptic action potentials. The classical Hebbian rule is based on detection of conjunctive presynaptic and postsynaptic activity by postsynaptic NMDA receptors, but there is also accumulating evidence for the existence of presynaptic NMDA receptors in several brain structures. Here, we examine the role of presynaptic NMDA receptors in defining the temporal structure of the plasticity rule governing induction of long-term depression (LTD) at the cerebellar parallel fiber-Purkinje cell synapse. We show that multiple presynaptic action potentials at frequencies between 40 Hz and 1 kHz are necessary for LTD induction. We characterize the subtype, kinetics, and role of presynaptic NMDA receptors involved in the induction of LTD, showing how the kinetics of the NR2A subunits expressed by parallel fibers implement a high-pass filter plasticity rule that will selectively attenuate synapses undergoing high-frequency bursts of activity. Depending on the type of NMDA receptor subunit expressed, high-pass filters of different corner frequencies could be implemented at other synapses expressing NMDA autoreceptors.
机译:突触可塑性的详细特征已导致根据突触前和突触后动作电位的顺序,用更复杂的规则代替简单的Hebbian规则。在这里,我们描述了一种赋予可塑性规则以额外的计算复杂性的机制-依赖于突触前动作电位的模式。经典的Hebbian规则基于通过突触后NMDA受体检测结膜突触前和突触后活性,但是也有越来越多的证据表明在某些脑结构中存在突触前NMDA受体。在这里,我们检查突触前NMDA受体在定义可塑性规则的时空结构中的作用,该可塑性规则控制小脑平行纤维-Purkinje细胞突触处的长期抑郁症(LTD)的诱导。我们表明在40 Hz和1 kHz之间的频率上的多个突触前动作电位对于LTD感应是必要的。我们表征参与诱导LTD的突触前NMDA受体的亚型,动力学和作用,显示平行纤维表达的NR2A亚基的动力学如何实现高通滤波器可塑性规则,该规则将选择性地衰减经历高频突触的突触。活动。根据表达的NMDA受体亚基的类型,可以在表达NMDA自身受体的其他突触处实施不同转折频率的高通滤波器。

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