Department of Cell Biology & Anatomy, New York Medical College, Valhalla, NY 10595, USA.
Department of Neuroscience, Karolinska Institutet, 171 77 Stockholm, Sweden.
Int J Mol Sci. 2020 Feb 20;21(4):1448. doi: 10.3390/ijms21041448.
SNAP-25 is essential to activity-dependent vesicle fusion and neurotransmitter release in the nervous system. During early development and adulthood, SNAP-25 appears to have differential influences on short- and long-term synaptic plasticity. The involvement of SNAP-25 in these processes may be different at hippocampal and neocortical synapses because of the presence of two different splice variants, which are developmentally regulated. We show here that the isoform SNAP-25a, which is expressed first developmentally in rodent brain, contributes to developmental regulation of the expression of both long-term depression (LTD) and long-term potentiation (LTP) at Schaffer collateral-CA1 synapses in the hippocampus. In one month old mice lacking the developmentally later expressed isoform SNAP-25b, Schaffer collateral-CA1 synapses showed faster release kinetics, decreased LTP and enhanced LTD. By four months of age, SNAP-25b-deficient mice appeared to have compensated for the lack of the adult SNAP-25b isoform, now exhibiting larger LTP and no differences in LTD compared to wild type mice. Interestingly, learning a hippocampus-dependent task reversed the reductions in LTP, but not LTD, seen at one month of age. In four month old adult mice, learning prevented the compensatory up-regulation of LTD that we observed prior to training. These findings support the hypothesis that SNAP-25b promotes stronger LTP and weakens LTD at Schaffer collateral-CA1 synapses in young mice, and suggest that compensatory mechanisms can reverse alterations in synaptic plasticity associated with a lack of SNAP-25b, once mice reach adulthood.
SNAP-25 对于神经系统中依赖活动的囊泡融合和神经递质释放是必不可少的。在早期发育和成年期,SNAP-25 似乎对短期和长期突触可塑性有不同的影响。由于存在两种不同的剪接变体,这些变体受发育调控,因此 SNAP-25 参与这些过程的方式可能在海马和新皮层突触中有所不同。我们在这里表明,在啮齿动物大脑中首先发育表达的异构体 SNAP-25a 有助于调节海马体 Schaffer 侧支-CA1 突触中长时程抑郁(LTD)和长时程增强(LTP)的表达。在缺乏发育后期表达的异构体 SNAP-25b 的一个月大的小鼠中,Schaffer 侧支-CA1 突触表现出更快的释放动力学,LTP 降低和 LTD 增强。到四个月大时,SNAP-25b 缺陷型小鼠似乎已经补偿了成年 SNAP-25b 异构体的缺乏,现在与野生型小鼠相比,LTP 更大,LTD 没有差异。有趣的是,学习一个海马体依赖性任务可以逆转一个月大时观察到的 LTP 减少,但不能逆转 LTD 减少。在四个月大的成年小鼠中,学习阻止了我们之前观察到的 LTD 的代偿性上调。这些发现支持了以下假设:在年轻小鼠中,SNAP-25b 促进 Schaffer 侧支-CA1 突触更强的 LTP 和更弱的 LTD,并且表明补偿机制可以逆转与缺乏 SNAP-25b 相关的突触可塑性的改变,一旦小鼠成年。