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α5 subunit-containing GABAA receptors affect the dynamic range of mouse hippocampal kainate-induced gamma frequency oscillations in vitro

机译:包含α5亚基的GABAA受体影响小鼠海马海藻酸酯海藻酸酯诱导的体外γ频率振荡的动态范围

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摘要

Though all in vitro models of gamma frequency network oscillations are critically dependent on GABAA receptor-mediated synaptic transmission little is known about the specific role played by different subtypes of GABAA receptor. Strong expression of the α5 subunit of the GABAA receptor is restricted to few brain regions, amongst them the hippocampal dendritic layers. Receptors containing this subunit may be expressed on the extrasynaptic membrane of principal cells and can mediate a tonic GABAA conductance. Using hippocampal slices of wild-type (WT) and α5−/− mice we investigated the role of α5 subunits in the generation of kainate-induced gamma frequency oscillations (20–80 Hz). The change in power of the oscillations evoked in CA3 by increasing network drive (kainate, 50–400 nm) was significantly greater in α5−/− than in WT slices. However, the change in frequency of gamma oscillations with increasing network drive seen in WT slices was absent in α5−/− slices. Raising the concentration of extracellular GABA by bathing slices in the GABA transaminase inhibitor vigabatrin and blocking uptake with tiagabine reduced the power of gamma oscillations more in WT slices than α5−/− slices (43%versus 15%). The data suggest that loss of this GABAA receptor subunit alters the dynamic profile of gamma oscillations to changes in network drive, possibly via actions of GABA at extrasynaptic receptors.
机译:尽管所有伽马频率网络振荡的体外模型都严重依赖于GABAA受体介导的突触传递,但对于不同亚型的GABAA受体所起的特定作用知之甚少。 GABAA受体的α5亚基的强表达仅限于少数大脑区域,其中包括海马树突状层。含有该亚基的受体可以在原代细胞的突触外膜上表达,并可以介导补剂GABAA传导。使用野生型(WT)和α5-/-小鼠的海马切片,我们研究了α5亚基在海藻酸盐诱导的伽马频率振荡(20–80 Hz)的产生中的作用。在CA3中,通过增加网络驱动(Kanate,50–400 nm)引起的振荡的功率变化在α5-/-中显着大于在WT片中。然而,在WT切片中,随着网络驱动的增加,伽马振荡频率没有变化,而在α5-/-切片中则没有。通过将切片浸入GABA转氨酶抑制剂vigabatrin中来提高细胞外GABA的浓度,并用替加宾碱来阻止摄取,与α5− / −切片相比,WT切片中的伽马振荡功率降低得更多(43%比15%)。数据表明,此GABAA受体亚基的丧失可能会通过GABA在突触外受体的作用而改变γ振荡的动态特性,从而改变网络驱动力。

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