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Presynaptically silent GABA synapses in hippocampus.

机译:突触前沉默的海马GABA突触。

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Mammalian central synapses commonly specialize in one fast neurotransmitter, matching the content of their presynaptic vesicles with the appropriate receptors in their postsynaptic membrane. Here, I show that hippocampal cultures contain autaptic glutamatergic synapses that contravene this rule: in addition to postsynaptic glutamate receptors, they also express clusters of functional postsynaptic GABA(A) receptors yet lack presynaptic GABA. Hence, these synapses are presynaptically silent with respect to GABA. They can be unsilenced by loading GABA into presynaptic vesicles by endocytosis, after which a postload IPSC appears. This IPSC is similar to native IPSCs recorded from GABAergic interneurons in the same cultures. Thus, these "mistargeted" GABA(A) receptors, which apparently lack a signal that confers synaptic specificity, function almost normally. After GABA loading, glutamatergic miniature postsynaptic currents acquire a slow tail that is mediated by GABA(A) receptors, showing that synaptic vesicles can accommodate both the usual concentration of native glutamate and a saturating concentration of loaded GABA. After brief Ca(2+)-dependent exocytosis, endocytosis of GABA can proceed in low-Ca(2+) external solution. The amplitude of the postload IPSC declines exponentially with repetitive stimulation as the endocytosed GABA passes through the presynaptic vesicle cycle and is depleted. Hence, by using GABA as an exogenous but physiological tracer, the properties of these presynaptically silent synapses can provide novel insights into the content and cycling of vesicles in presynaptic terminals.
机译:哺乳动物的中央突触通常专门研究一种快速的神经递质,使突触前囊泡的含量与突触后膜中的适当受体相匹配。在这里,我表明海马培养物中含有违反这一规则的自发性谷氨酸能突触:除了突触后谷氨酸受体外,它们还表达功能性突触后GABA(A)受体簇,但缺乏突触前GABA。因此,这些突触对于GABA是突触前沉默的。通过内吞作用将GABA加载到突触前囊泡中可以使其沉默,然后出现IPSC加载后。该IPSC与在相同培养物中从GABA能中间神经元记录的天然IPSC相似。因此,这些“目标不正确”的GABA(A)受体显然缺乏正常的信号,赋予突触特异性。 GABA加载后,谷氨酸能的微型突触后电流获得由GABA(A)受体介导的慢尾巴,表明突触囊泡既可以容纳正常浓度的天然谷氨酸,也可以容纳饱和浓度的加载的GABA。短暂的Ca(2+)依赖性胞吐作用后,GABA的内吞作用可以在低Ca(2+)外部溶液中进行。随着内吞的GABA穿过突触前囊泡周期并耗尽,后负荷IPSC的幅度随着重复刺激而呈指数下降。因此,通过使用GABA作为外源但生理的示踪剂,这些突触前沉默突触的性质可以提供有关突触前终末囊泡内容和循环的新颖见解。

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