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Input-Timing-Dependent Plasticity in the Hippocampal CA2 Region and Its Potential Role in Social Memory

机译:海马CA2区的输入时序依赖性可塑性及其在社会记忆中的潜在作用

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摘要

Input-timing-dependent plasticity (ITDP) is a circuit-based synaptic learning rule by which paired activation of entorhinal cortical (EC) and Schaffer collateral (SC) inputs to hippocampal CA1 pyramidal neurons (PNs) produces a long-term enhancement of SC excitation. We now find that paired stimulation of EC and SC inputs also induces ITDP of SC excitation of CA2 PNs. However, whereas CA1 ITDP results from long-term depression of feed-forward inhibition (iLTD) as a result of activation of CB1 endocannabinoid receptors on cholecystokinin-expressing interneurons, CA2 ITDP results from iLTD through activation of d-opioid receptors on parvalbumin-expressing interneurons. Furthermore, whereas CA1 ITDP has been previously linked to enhanced specificity of contextual memory, we find that CA2 ITDP is associated with enhanced social memory. Thus, ITDP may provide a general synaptic learning rule for distinct forms of hippocampal-dependent memory mediated by distinct hippocampal regions.
机译:输入时序依赖性塑性(ITDP)是一种基于电路的突触学习规则,通过该基于电路的突触学习规则,通过该突触突触学习规则将Entorlinal皮质(EC)和Schaffer抵押品(SC)输入到海马CA1金字塔神经元(PNS)产生了长期增强 励磁。 我们现在发现EC和SC输入的配对刺激也诱导CA2 PNS的SC激发ITDP。 然而,当CA1 ITDP由于CB1 Endocannaboid受体对胆囊蛋白表达的中间核核心的激活而导致的饲前抑制(ILTD)产生的,通过激活胰岛稳定性的D-阿片受体,从ILTD产生CB1内胆碱受体。 中间核心。 此外,虽然CA1 ITDP先前已链接到增强语境记忆的特异性,但发现CA2 ITDP与增强的社交内存相关联。 因此,ITDP可以提供由不同海马区域介导的不同形式的异常形式的突触学习规则。

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  • 来源
    《Neuron 》 |2017年第5期| 共19页
  • 作者单位

    Columbia Univ Dept Neurosci Kavli Inst Brain Sci Med Ctr 1051 Riverside Dr New York NY 10027;

    Columbia Univ Dept Neurosci Kavli Inst Brain Sci Med Ctr 1051 Riverside Dr New York NY 10027;

    Columbia Univ Dept Neurosci Kavli Inst Brain Sci Med Ctr 1051 Riverside Dr New York NY 10027;

    Columbia Univ Dept Neurosci Kavli Inst Brain Sci Med Ctr 1051 Riverside Dr New York NY 10027;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学 ;
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