Fioravante Diasinou, Liu Rong-Yu, Netek Anne K, Cleary Leonard J, Byrne John H
Department of Neurobiology and Anatomy, W M Keck Ctr for the Neurobiology of Learning and Memory, The University of Texas Medical School at Houston, Houston, TX 77225, USA.
J Neurophysiol. 2007 Dec;98(6):3568-80. doi: 10.1152/jn.00604.2007. Epub 2007 Oct 3.
Synapsin is a synaptic vesicle-associated protein implicated in the regulation of vesicle trafficking and transmitter release, but its role in heterosynaptic plasticity remains elusive. Moreover, contradictory results have obscured the contribution of synapsin to homosynaptic plasticity. We previously reported that the neuromodulator serotonin (5-HT) led to the phosphorylation and redistribution of Aplysia synapsin, suggesting that synapsin may be a good candidate for the regulation of vesicle mobilization underlying the short-term synaptic plasticity induced by 5-HT. This study examined the role of synapsin in homosynaptic and heterosynaptic plasticity. Overexpression of synapsin reduced basal transmission and enhanced homosynaptic depression. Although synapsin did not affect spontaneous recovery from depression, it potentiated 5-HT-induced dedepression. Computational analysis showed that the effects of synapsin on plasticity could be adequately simulated by altering the rate of Ca(2+)-dependent vesicle mobilization, supporting the involvement of synapsin not only in homosynaptic but also in heterosynaptic forms of plasticity by regulating vesicle mobilization.
突触结合蛋白是一种与突触小泡相关的蛋白质,参与囊泡运输和神经递质释放的调节,但其在异突触可塑性中的作用仍不清楚。此外,相互矛盾的结果掩盖了突触结合蛋白对同突触可塑性的贡献。我们之前报道过,神经调质5-羟色胺(5-HT)会导致海兔突触结合蛋白的磷酸化和重新分布,这表明突触结合蛋白可能是调节由5-HT诱导的短期突触可塑性中囊泡动员的一个很好的候选者。本研究考察了突触结合蛋白在同突触和异突触可塑性中的作用。突触结合蛋白的过表达降低了基础传递并增强了同突触抑制。虽然突触结合蛋白不影响从抑制状态的自发恢复,但它增强了5-HT诱导的去抑制。计算分析表明,通过改变钙(2+)依赖性囊泡动员的速率,可以充分模拟突触结合蛋白对可塑性的影响,这支持了突触结合蛋白不仅通过调节囊泡动员参与同突触可塑性,也参与异突触可塑性形式。