兴奋性突触后电位
神经科学
海马结构
突触小泡
启动(农业)
化学
生物
心理学
小泡
抑制性突触后电位
膜
生物化学
植物
发芽
作者
Mohammad Aldahabi,Flora Balint,Noémi Holderith,Andrea Lőrincz,Maria Reva,Zoltán Nusser
出处
期刊:Neuron
[Elsevier]
日期:2022-10-18
卷期号:110 (24): 4144-4161.e7
被引量:32
标识
DOI:10.1016/j.neuron.2022.09.035
摘要
A stunning example of synaptic diversity is the postsynaptic target cell-type-dependent difference in synaptic efficacy in cortical networks. Here, we show that CA1 pyramidal cell (PC) to fast spiking interneuron (FSIN) connections have 10-fold larger release probability (Pv) than those on oriens lacunosum-moleculare (O-LM) interneurons. Freeze-fracture immunolabeling revealed that different nano-topologies and coupling distances between Ca2+ channels and release sites (RSs) are not responsible for the distinct Pv. Although [Ca2+] transients are 40% larger in FSINs innervating boutons, when [Ca2+] entry is matched in the two bouton populations, EPSCs in O-LM cells are still 7-fold smaller. However, application of a phorbol ester analog resulted in a ∼2.5-fold larger augmentation at PC – O-LM compared to PC – FSIN synapses, suggesting incomplete docking or priming of vesicles. Similar densities of docked vesicles rule out distinct RS occupancies and demonstrate that incompletely primed, but docked, vesicles limit the output of PC – O-LM synapses.
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