首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >An Aplysia type 4 phosphodiesterase homolog localizes at the presynaptic terminals of Aplysia neuron and regulates synaptic facilitation.
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An Aplysia type 4 phosphodiesterase homolog localizes at the presynaptic terminals of Aplysia neuron and regulates synaptic facilitation.

机译:Aplysia 4型磷酸二酯酶同源物位于Aplysia神经元的突触前末端,并调节突触促进作用。

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摘要

The cAMP-dependent signaling pathway is critically involved in memory-related synaptic plasticity. cAMP-specific type 4 phosphodiesterases (PDE4) play a role in this process by regulating the cAMP concentration. However, it is unclear how PDE4 is involved in regulating synaptic plasticity. To address this issue in Aplysia sensory-to-motor synapses, we identified a long isoform of the PDE4 homolog in Aplysia kurodai (apPDE), with genetic and biochemical properties similar to those of mammalian PDE4s. Furthermore, apPDE is localized to the membrane and presynaptic region. Both apPDE overexpression and knock-down impaired short- and long-term facilitation, indicating that an appropriate expression level of apPDE in synaptic regions is required for normal synaptic facilitation. By using fluorescence resonance energy transfer-based measurement of in vivo protein kinase A (PKA) activation, we found that the PKA activation by 5-hydroxytryptamine (5-HT) was impaired in both apPDE-overexpressed and knock-down synapses. Analogous to the inhibition of apPDE by RNA interference, chronic rolipram treatment before 5-HT stimulation also impaired the PKA activation by 5-HT, suggesting that regulation of the synaptic cAMP level by PDE4 is critical for normal synaptic facilitation. Together, we suggest that PDE4s localized in the synapses play a critical role in regulating the optimum cAMP level required for normal synaptic plasticity.
机译:依赖cAMP的信号通路与记忆相关的突触可塑性至关重要。 cAMP特异性4型磷酸二酯酶(PDE4)在此过程中通过调节cAMP浓度发挥作用。但是,尚不清楚PDE4如何参与调节突触可塑性。为了解决Aplysia感觉到运动突触中的这个问题,我们鉴定了Aplysia kurodai(apPDE)中PDE4同源物的长同工型,其遗传和生化特性与哺乳动物PDE4相似。此外,apPDE位于膜和突触前区域。 apPDE的过表达和敲除均削弱了短期和长期的促进作用,这表明正常的突触促进需要突触区域中apPDE的适当表达水平。通过使用基于荧光共振能量转移的体内蛋白激酶A(PKA)活化测量,我们发现apPDE过度表达和敲低突触均削弱了5-羟色胺(5-HT)的PKA活化。类似于RNA干扰对apPDE的抑制作用,在5-HT刺激之前进行慢性咯利普兰治疗也会损害5-HT的PKA激活,这表明PDE4对突触cAMP水平的调节对于正常的突触促进至关重要。在一起,我们建议定位在突触中的PDE4在调节正常突触可塑性所需的最佳cAMP水平中起关键作用。

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