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首页> 外文期刊>Journal of Cell Science >MAPK/Erk-dependent phosphorylation of synapsin mediates formation of functional synapses and short-term homosynaptic plasticity.
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MAPK/Erk-dependent phosphorylation of synapsin mediates formation of functional synapses and short-term homosynaptic plasticity.

机译:MAPK / Erk依赖性突触蛋白的磷酸化介导功能性突触的形成和短期同质突触可塑性。

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摘要

MAPK/Erk is a protein kinase activated by neurotrophic factors involved in synapse formation and plasticity, which acts at both the nuclear and cytoplasmic level. Synapsin proteins are synaptic-vesicle-associated proteins that are well known to be MAPK/Erk substrates at phylogenetically conserved sites. However, the physiological role of MAPK/Erk-dependent synapsin phosphorylation in regulating synaptic formation and function is poorly understood. Here, we examined whether synapsin acts as a physiological effector of MAPK/Erk in synaptogenesis and plasticity. To this aim, we developed an in vitro model of soma-to-soma paired Helix B2 neurons, that establish bidirectional excitatory synapses. We found that the formation and activity-dependent short-term plasticity of these synapses is dependent on the MAPK/Erk pathway. To address the role of synapsin in this pathway, we generated non-phosphorylatable and pseudo-phosphorylated Helix synapsin mutants at the MAPK/Erk sites. Overexpression experiments revealed that both mutants interfere with presynaptic differentiation, synapsin clustering, and severely impair post-tetanic potentiation, a form of short-term homosynaptic plasticity. Our findings show that MAPK/Erk-dependent synapsin phosphorylation has a dual role both in the establishment of functional synaptic connections and their short-term plasticity, indicating that some of the multiple extranuclear functions of MAPK/Erk in neurons can be mediated by the same multifunctional presynaptic target.
机译:MAPK / Erk是一种蛋白神经激酶,由涉及突触形成和可塑性的神经营养因子激活,在核和细胞质水平均起作用。突触蛋白是突触小泡相关蛋白,众所周知是系统发育保守位点的MAPK / Erk底物。但是,人们对MAPK / Erk依赖性突触素磷酸化在调节突触形成和功能中的生理作用了解甚少。在这里,我们检查了突触蛋白是否在突触发生和可塑性中充当MAPK / Erk的生理效应。为了这个目的,我们开发了体间配对的Helix B2神经元的体外模型,该模型建立了双向兴奋性突触。我们发现这些突触的形成和活动依赖的短期可塑性取决于MAPK / Erk途径。为了解决突触蛋白在该途径中的作用,我们在MAPK / Erk位点产生了非磷酸化和假磷酸化的螺旋突触蛋白突变体。过表达实验表明,这两个突变体均会干扰突触前的分化,突触素簇集,并严重损害强直性强直性可塑性,这是一种短期的同源突触可塑性。我们的发现表明,MAPK / Erk依赖性突触素磷酸化在功能性突触连接的建立和它们的短期可塑性中均具有双重作用,这表明MAPK / Erk在神经元中的多个核外功能可以通过相同的途径介导。多功能突触前的目标。

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