首页> 外文期刊>The Journal of Physiology >Requirement for CB1 but not GABA_B receptors in the cholecystokinin mediated inhibition of GABA release from cholecystokinin expressing basket cells
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Requirement for CB1 but not GABA_B receptors in the cholecystokinin mediated inhibition of GABA release from cholecystokinin expressing basket cells

机译:胆囊收缩素介导的表达胆囊收缩素的篮细胞对GABA释放的抑制作用中对CB1而不是GABA_B受体的需求

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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 GABA_b 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 Ca~(2+) channel antagonist agatoxin TK (250 nl) 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 GABA_B receptor antagonist CGP55845 (2 /am). In contrast, cannabinoid type-1 (CB1) receptor blockade with AM251 (10 muM) 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,CCK被证明是通过直接使表达小白蛋白的(PV〜+)篮细胞去极化而间接抑制GABA从表达CCK的(CCK〜+)篮细胞中释放而充当分子开关的海马过氧化物酶体抑制作用。但是,这两种CCK介导的作用是否因果相关存在争议,其中一种假设提出,CCK诱导的PV〜+篮状细胞放电会增加GABA的释放,进而反突触地抑制GABA从邻近CCK〜释放。 +通过突触前GABA_b受体的篮细胞末端。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表明,P / Q Ca〜(2+)通道拮抗剂抗毒素TK(250 nl)消除了PV〜+篮细胞中GABA的释放,但对CCK诱导的CCK〜+篮状细胞GABA释放抑制作用没有影响。此外,即使在存在GABA_B受体拮抗剂CGP55845(2 / am)的情况下,CCK仍能降低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GCC从CCK〜+篮状细胞释放和树突状投射的CCK〜+ Schaffer侧支相关中间神经元的作用。这些结果表明,CCK介导的抑制CABA从CCK〜+细胞释放的过程不需要PV〜+和CCK〜+突触之间的串扰,但它关键地依赖于CB1受体介导的内源性大麻素信号,无论是在异源性的还是树突状的输入中。

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