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首页> 外文期刊>Learning & memory >Gi2 inhibition of adenylate cyclase regulates presynaptic activity and unmasks cGMP-dependent long-term depression at Schaffer collateral-CA1 hippocampal synapses
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Gi2 inhibition of adenylate cyclase regulates presynaptic activity and unmasks cGMP-dependent long-term depression at Schaffer collateral-CA1 hippocampal synapses

机译:Gi2对腺苷酸环化酶的抑制作用可调节突触前活性,并掩盖Schaffer侧支CA1海马突触中cGMP依赖性长期抑制

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摘要

Cyclic AMP signaling plays a central role in regulating activity at a number of synapses in the brain. We showed previously that pairing activation of receptors that inhibit adenylate cyclase (AC) and reduce the concentration of cyclic AMP, with elevation of the concentration of cyclic GMP is sufficient to elicit a presynaptically expressed form of LTD at Schaffer collateral-CA1 synapses in the hippocampus. To directly test the role of AC inhibition and G-protein signaling in LTD at these synapses, we utilized transgenic mice that express a mutant, constitutively active inhibitory G protein, Gi2, in principal neurons of the forebrain. Transgene expression of Gi2 markedly enhanced LTD and impaired late-phase LTP at Schaffer collateral synapses, with no associated differences in input/output relations, paired-pulse facilitation, or NMDA receptor-gated conductances. When paired with application of a type V phosphodiesterase inhibitor to elevate the concentration of intracellular cyclic GMP, constitutively active Gi2 expression converted the transient depression normally caused by this treatment to an LTD that persisted after the drug was washed out. Moreover, this effect could be mimicked in control slices by pairing type V phosphodiesterase inhibitor application with application of a PKA inhibitor. Electrophysiological recordings of spontaneous excitatory postsynaptic currents and two-photon visualization of vesicular release using FM1-43 revealed that constitutively active Gi2 tonically reduced basal release probability from the rapidly recycling vesicle pool of Schaffer collateral terminals. Our findings support the hypothesis that inhibitory G-protein signaling acts presynaptically to regulate release, and, when paired with elevations in the concentration of cyclic GMP, converts a transient cyclic GMP-induced depression into a long-lasting decrease in release.
机译:循环AMP信号传导在调节大脑中许多突触的活动中起着核心作用。先前我们证明了抑制腺苷酸环化酶(AC)并降低环状AMP浓度的受体的配对激活,随着环状GMP浓度的升高,足以在海马Schaffer侧支CA1突触中引起LTD的突触前表达形式。 。为了直接测试在这些突触中AC抑制和G蛋白信号传导在LTD中的作用,我们利用了在前脑的主要神经元中表达突变型,组成型活性抑制性G蛋白Gi2的转基因小鼠。 Gi2的转基因表达显着增强了Schaffer侧突触的LTD,并损害了后期LTP,在输入/输出关系,配对脉冲促进或NMDA受体门控电导方面没有相关的差异。当与应用V型磷酸二酯酶抑制剂以提高细胞内环状GMP的浓度配合使用时,组成型活性Gi2表达将通常由这种治疗引起的短暂性抑郁转化为LTD,这种LTD在药物被洗出后仍然持续存在。此外,通过将V型磷酸二酯酶抑制剂与PKA抑制剂配对使用,可以在对照切片中模拟这种效果。自发性兴奋性突触后电流的电生理记录和使用FM1-43的囊泡释放的双光子可视化显示,组成型活性Gi2从Schaffer侧支末端的快速回收囊泡池中基本减少了基础释放的可能性。我们的发现支持这样的假设,即抑制性G蛋白信号传导可先突触地调节释放,并与环状GMP浓度升高配对,将短暂的环状GMP诱导的抑郁转化为持久的释放下降。

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