首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Activity-dependent phosphorylation of Ser187 is required for SNAP-25-negative modulation of neuronal voltage-gated calcium channels
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Activity-dependent phosphorylation of Ser187 is required for SNAP-25-negative modulation of neuronal voltage-gated calcium channels

机译:SNAP-25负调节神经元电压门控钙通道所需的依赖于活性的Ser187磷酸化。

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摘要

Synaptosomal-associated protein of 25 kDa (SNAP-25) is a SNARE protein that regulates neurotransmission by the formation of a complex with syntaxin 1 and synaptobrevin/VAMP2. SNAP-25 also reduces neuronal calcium responses to stimuli, but neither the functional relevance nor the molecular mechanisms of this modulation have been clarified. In this study, we demonstrate that hippocampal slices from Snap25+/− mice display a significantly larger facilitation and that higher calcium peaks are reached after depolarization by Snap25−/− and Snap25+/− cultured neurons compared with wild type. We also show that SNAP-25b modulates calcium dynamics by inhibiting voltage-gated calcium channels (VGCCs) and that PKC phosphorylation of SNAP-25 at ser187 is essential for this process, as indicated by the use of phosphomimetic (S187E) or nonphosphorylated (S187A) mutants. Neuronal activity is the trigger that induces the transient phosphorylation of SNAP-25 at ser187. Indeed, enhancement of network activity increases the levels of phosphorylated SNAP-25, whereas network inhibition reduces the extent of protein phosphorylation. A transient peak of SNAP-25 phosphorylation also is detectable in rat hippocampus in vivo after i.p. injection with kainate to induce seizures. These findings demonstrate that differences in the expression levels of SNAP-25 impact on calcium dynamics and neuronal plasticity, and that SNAP-25 phosphorylation, by promoting inhibition of VGCCs, may mediate a negative feedback modulation of neuronal activity during intense activation.
机译:25kDa的突触体相关蛋白(SNAP-25)是一种SNARE蛋白,它通过与语法素1和突触素/ VAMP2形成复合物来调节神经传递。 SNAP-25还降低了神经元对刺激的钙反应,但该功能的功能相关性和分子机制均未阐明。在这项研究中,我们证明了Snap25 +/- 小鼠的海马切片显示出明显更大的促进作用,并且Snap25 -/-和Snap25去极化后达到了更高的钙峰。与野生型相比, +/- 培养的神经元。我们还显示,SNAP-25b通过抑制电压门控钙通道(VGCC)调节钙动力学,并且SNAP-25在ser187的PKC磷酸化对于该过程至关重要,如使用拟磷酸酶(S187E)或未磷酸化的(S187A )的突变体。神经元活性是诱导serAP处SNAP-25瞬时磷酸化的触发器。实际上,网络活性的增强会增加磷酸化SNAP-25的水平,而网络抑制则会降低蛋白质的磷酸化程度。腹腔注射后,在大鼠海马体内也可检测到SNAP-25磷酸化的瞬时峰值。用海藻酸盐注射以诱发癫痫发作。这些发现表明,SNAP-25表达水平的差异会影响钙动力学和神经元可塑性,并且SNAP-25磷酸化通过促进VGCC的抑制作用,可能在强烈激活过程中介导神经元活动的负反馈调节。

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