首页> 美国卫生研究院文献>The Journal of Neuroscience >Phosphorylation of Synapsin I by Cyclin-Dependent Kinase-5 Sets the Ratio between the Resting and Recycling Pools of Synaptic Vesicles at Hippocampal Synapses
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Phosphorylation of Synapsin I by Cyclin-Dependent Kinase-5 Sets the Ratio between the Resting and Recycling Pools of Synaptic Vesicles at Hippocampal Synapses

机译:突触素I的磷酸化由细胞周期蛋白依赖性激酶5磷酸化设置海马突触的突触小泡的休息池和回收池之间的比率。

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摘要

Cyclin-dependent kinase-5 (Cdk5) was reported to downscale neurotransmission by sequestering synaptic vesicles (SVs) in the release-reluctant resting pool, but the molecular targets mediating this activity remain unknown. Synapsin I (SynI), a major SV phosphoprotein involved in the regulation of SV trafficking and neurotransmitter release, is one of the presynaptic substrates of Cdk5, which phosphorylates it in its C-terminal region at Ser549 (site 6) and Ser551 (site 7). Here we demonstrate that Cdk5 phosphorylation of SynI fine tunes the recruitment of SVs to the active recycling pool and contributes to the Cdk5-mediated homeostatic responses. Phosphorylation of SynI by Cdk5 is physiologically regulated and enhances its binding to F-actin. The effects of Cdk5 inhibition on the size and depletion kinetics of the recycling pool, as well as on SV distribution within the nerve terminal, are virtually abolished in mouse SynI knock-out (KO) neurons or in KO neurons expressing the dephosphomimetic SynI mutants at sites 6,7 or site 7 only. The observation that the single site-7 mutant phenocopies the effects of the deletion of SynI identifies this site as the central switch in mediating the synaptic effects of Cdk5 and demonstrates that SynI is necessary and sufficient for achieving the effects of the kinase on SV trafficking. The phosphorylation state of SynI by Cdk5 at site 7 is regulated during chronic modification of neuronal activity and is an essential downstream effector for the Cdk5-mediated homeostatic scaling.
机译:据报道,通过隔离不愿释放的静息池中的突触小泡(SVs),细胞周期蛋白依赖性激酶5(Cdk5)降低了神经传递的水平,但介导这种活性的分子靶点仍然未知。 Synapsin I(SynI)是一种主要的SV磷蛋白,参与调节SV的运输和神经递质的释放,是Cdk5的突触前底物之一,可在其C端区域Ser 549 (网站6)和Ser 551 (网站7)。在这里,我们证明SynI的Cdk5磷酸化微调了SVs到主动回收池的募集,并有助于Cdk5介导的稳态反应。 Cdk5对SynI的磷酸化受到生理调节,并增强了其与F-肌动蛋白的结合。 Cdk5抑制作用对回收池的大小和耗竭动力学的影响以及对神经末梢内SV分布的影响在小鼠SynI敲除(KO)神经元或在细胞中表达去磷酸化SynI突变体的KO神经元中实际上被消除了。网站6,7或仅网站7。单位7突变体表型复制了SynI缺失的作用的观察结果将该位点识别为介导Cdk5突触作用的中心开关,并证明SynI对实现激酶对SV转运的作用是必要和充分的。在慢性改变神经元活性的过程中,Cdk5在部位7处的SynI磷酸化状态受到调节,并且是Cdk5介导的稳态缩放的重要下游效应物。

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