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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dopamine d1 and d5 receptors modulate spike timing-dependent plasticity at medial perforant path to dentate granule cell synapses
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Dopamine d1 and d5 receptors modulate spike timing-dependent plasticity at medial perforant path to dentate granule cell synapses

机译:多巴胺D1和D5受体调节内侧穿孔路径的尖峰正时依赖性,以牙齿颗粒细胞突触

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Although evidence suggests that DA modulates hippocampal function, the mechanisms underlying that dopaminergic modulation are largely unknown. Using perforated-patch electrophysiological techniques to maintain the intracellular milieu, we investigated how the activation of D1-type DA receptors regulates spike timing-dependent plasticity (STDP) of the medial perforant path (mPP) synapse onto dentate granule cells. When D1-type receptors were inhibited, a relatively mild STDP protocol induced LTP only within a very narrow timing window between presynaptic stimulation and postsynaptic response. The stimulus protocol produced timing-dependent LTP (tLTP) only when the presynaptic stimulation was followed 30 ms later by depolarization-induced postsynaptic action potentials. That is, the time between presynaptic stimulation and postsynaptic response was 30 ms (At = + 30 ms). When D1-type receptors were activated, however, the same mild STDP protocol induced tLTP over a much broader timing window: tLTP was induced when — 30 ms At +30 ms. The result indicated that D1-type receptor activation enabled synaptic potentiation even when postsynaptic activity preceded presynaptic stimulation within this At range. Results with null mice lacking the Kv4.2 potassium channel and with the potassium channel inhibitor, 4-aminopyridine, suggested that D1-type receptors enhanced tLTP induction by suppressing the transient IA-type K+ current. Results obtained with antagonists and DA receptor knock-out mice indicated that endogenous activity of both D1 and D5 receptors modulated plasticity in the mPP. The DA D5 receptors appeared particularly important in regulating plasticity of the mPP onto the dentate granule cells.
机译:虽然证据表明DA调节海马函数,但多巴胺能调制的基本的机制在很大程度上是未知的。使用穿孔贴剂电生理技术来维持细胞内的Milieu,我们研究了D1型DA受体的激活如何将内侧穿孔路径(MPP)突触的尖峰定时依赖性塑性(STDP)调节到牙齿颗粒细胞上。当抑制D1型受体时,仅在突触前刺激和突触后反应之间的非常窄的时序窗口内诱导LTP的相对温和的STDP协议。仅当通过去极化诱导的突触后动作电位后续跟踪突触前刺激30ms时,刺激方案仅产生正时LTP(TLTP)。也就是说,突触前刺激和突触后响应之间的时间为30ms(= + 30ms)。然而,当激活D1型受体时,相同的温和STDP协议在更广泛的定时窗口中引起的TLTP:TLTP诱导当 - 30ms&在& +30毫秒。结果表明,即使在该范围内的突触后活性之前,D1型受体激活也能够使突触潜力能够。缺少kV4.2钾通道和钾通道抑制剂,4-氨基吡啶的结果表明D1型受体通过抑制瞬时IA型K +电流来增强TLTP诱导。用拮抗剂和DA受体敲除小鼠获得的结果表明,D1和D5受体的内源性活性调节MPP中的可塑性。 DA D5受体在将MPP的可塑性调节到牙齿颗粒细胞上特别重要。

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