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Acute Stress Impairs Hippocampal Mossy Fiber-CA3 Long-Term Potentiation by Enhancing cAMP-Specific Phosphodiesterase 4 Activity

机译:急性应激通过增强cAMP特异性磷酸二酯酶4的活性来损害海马苔藓纤维CA3的长期增强作用。

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摘要

The mossy fiber synapses onto hippocampal CA3 neurons show unique molecular features and a wide dynamic range of plasticity. Although acute stress has been well recognized to alter bidirectional long-term synaptic plasticity in the hippocampal CA1 region and dentate gyrus, it remains unclear whether the same effect may also occur at the mossy fiber-CA3 synapses. Here, we report that hippocampal slices prepared from adult mice that had experienced an acute unpredictable and inescapable restraint tail-shock stress showed a marked impairment of long-term potentiation (LTP) induced by high-frequency stimulation or adenylyl cyclase activator forskolin. This effect was prevented when animals were submitted to bilateral adrenalectomy or given the glucocorticoid receptor antagonist RU38486 before experiencing stress. In contrast, stress has no effect on synaptic potentiation induced by the non-hydrolysable and membrane-permeable cyclic adenosine 5′-monophosphate (cAMP) analog Sp-8-bromo-cAMPS. No obvious differences were observed between control and stressed mice in the basal synaptic transmission, paired-pulse facilitation, or frequency facilitation at the mossy fiber-CA3 synapses. We also found that the inhibitory effect of stress on mossy fiber LTP was obviated by the adenosine A1 receptor antagonist 8-cyclopentyl-1,3,-dipropylxanthine, the non-specific phosphodiesterase (PDE) inhibitor 3-isobutyl-methylxanthine, and the specific PDE4 inhibitor 4-(3-butoxy-4-methoxyphenyl)methyl-2-imidazolidone. In addition, stress induces a sustained and profound increase in cAMP-specific PDE4 activity. These results suggest that the inhibition of mossy fiber LTP by acute stress treatment seems originating from a corticosterone-induced sustained increase in the PDE4 activity to accelerate the metabolism of cAMP to adenosine, in turn triggering an adenosine A1 receptor-mediated impairment of transmitter release machinery.
机译:苔藓纤维突触到海马CA3神经元上显示出独特的分子特征和广泛的可塑性动态范围。尽管已经认识到急性应激会改变海马CA1区和齿状回的双向长期突触可塑性,但仍不清楚在苔藓纤维CA3突触中是否也可能发生相同的作用。在这里,我们报道从成年小鼠制备的海马切片经历了急性的不可预知的和不可避免的约束性尾巴休克应激,显示了高频刺激或腺苷酸环化酶激活素forskolin诱导的长期增强(LTP)的明显损伤。当动物在承受压力之前接受双侧肾上腺切除术或给予糖皮质激素受体拮抗剂RU38486时,可防止此效应。相反,应激对不可水解且膜可渗透的环状腺苷5'-单磷酸(cAMP)类似物Sp-8-bromo-cAMPS诱导的突触增强没有影响。在苔藓纤维-CA3突触的基础突触传递,成对脉冲促进或频率促进方面,对照组和应激小鼠之间没有观察到明显差异。我们还发现,腺苷A1受体拮抗剂8-环戊基-1,3,-二丙基黄嘌呤,非特异性磷酸二酯酶(PDE)抑制剂3-异丁基-甲基黄嘌呤和特定的脂质消除了应力对苔藓纤维LTP的抑制作用。 PDE4抑制剂4-(3-丁氧基-4-甲氧基苯基)甲基-2-咪唑啉酮。此外,压力会导致cAMP特异性PDE4活性持续而深刻的增加。这些结果表明,急性应激处理对苔藓纤维LTP的抑制作用似乎源于皮质酮诱导的PDE4活性的持续增加,从而加速了cAMP代谢为腺苷,进而触发了腺苷A1受体介导的递质释放机制的损害。 。

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