首页> 美国卫生研究院文献>The Journal of Physiology >Requirement for CB1 but not GABAB receptors in the cholecystokinin mediated inhibition of GABA release from cholecystokinin expressing basket cells
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Requirement for CB1 but not GABAB receptors in the cholecystokinin mediated inhibition of GABA release from cholecystokinin expressing basket cells

机译:胆囊收缩素介导的抑制表达表达胆囊收缩素的篮子细胞释放GABA的要求是CB1而非GABAB受体

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摘要

Cholecystokinin (CCK) is an abundant neuropeptide involved in normal behaviour and pathophysiological conditions. Recently, CCK was shown to act as a molecular switch for perisomatic inhibition in the hippocampus, by directly depolarizing parvalbumin expressing (PV+) basket cells while indirectly depressing GABA release from CCK expressing (CCK+) basket cells. However, whether these two CCK-mediated effects are causally related is controversial, with one hypothesis proposing that the CCK-induced firing of PV+ basket cells increases the release of GABA, which, in turn, heterosynaptically inhibits GABA release from neighbouring CCK+ basket cell terminals through presynaptic GABAB receptors. Our present data from paired recording experiments from presynaptic basket cells and postsynaptic CA1 pyramidal cells in acute rat brain slices show that the P/Q Ca2+ channel antagonist agatoxin TK (250 nm) abolished GABA release from PV+ basket cells, but it had no effect on the CCK-induced depression of GABA release from CCK+ basket cells. Furthermore, CCK decreased GABA release from CCK+ basket cells even in the presence of the GABAB receptor antagonist (2 μm). In contrast, cannabinoid type-1 (CB1) receptor blockade with AM251 (10 μm) prevented the action of CCK on GABA release both from CCK+ basket cells and dendritically projecting, CCK+ Schaffer collateral-associated interneurons. These results demonstrate that CCK-mediated inhibition of GABA release from CCK+ cells requires no cross-talk between PV+ and CCK+ synapses, but that it critically depends on CB1 receptor-mediated endocannabinoid signalling at both perisomatic and dendritic inputs.
机译:胆囊收缩素(CCK)是一种参与正常行为和病理生理状况的丰富神经肽。最近,显示CCK通过直接使表达小白蛋白的(PV + )篮细胞去极化而间接抑制GCC从表达CCK的释放(CCK + )篮子单元格。然而,这两种CCK介导的作用是否因果相关存在争议,一种假设认为CCK诱导的PV + 篮状细胞放电会增加GABA的释放,从而反同义地抑制GABA通过突触前的GABA B受体从邻近CCK + 篮细胞末端释放。我们从急性大鼠脑切片中突触前篮细胞和突触后CA1锥体细胞的配对记录实验中获得的当前数据显示,P / Q Ca 2 + 通道拮抗剂琼脂毒素TK(250 nm)消除了PV中GABA的释放 + 篮状细胞,但对CCK诱导的CCK + 篮状细胞释放的GABA抑制没有影响。此外,即使存在GABAB受体拮抗剂(2μm),CCK也会降低CCK + 篮细胞中GABA的释放。相反,用AM251(10μm)阻断1型大麻素(CB1)受体阻止了CCK对GCK从CCK + 篮状细胞释放和呈树突状投射CCK + Schaffer侧支相关神经元。这些结果表明,CCK介导的抑制CABA从CCK + 细胞释放的作用不需要PV + 和CCK + 突触之间的串扰,但是它关键取决于CB1受体介导的环向和树突状输入的内源性大麻素信号。

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