首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Two synaptic vesicle pools, vesicle recruitment and replenishment of pools at the Drosophila neuromuscular junction.
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Two synaptic vesicle pools, vesicle recruitment and replenishment of pools at the Drosophila neuromuscular junction.

机译:果蝇神经肌肉交界处的两个突触囊泡池,囊泡募集和池的补充。

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Drosophila neuromuscular junctions ( D NMJs) are malleable and its synaptic strength changes with activities. Mobilization and recruitment of synaptic vesicles (SVs), and replenishment of SV pools in the presynaptic terminal are involved in control of synaptic efficacy. We have studied dynamics of SVs using a fluorescent styryl dye, FM1-43, which is loaded into SVs during endocytosis and released during exocytosis, and identified two SV pools. The exo/endo cycling pool (ECP) is loaded with FM1-43 during low frequency nerve stimulation and releases FM1-43 during exocytosis induced by high K(+). The ECP locates close to release sites in the periphery of presynaptic boutons. The reserve pool (RP) is loaded and unloaded only during high frequency stimulation and resides primarily in the center of boutons. The size of ECP closely correlates with the efficacy of synaptic transmission during low frequency neuronal firing. An increase of cAMP facilitates SV movement from RP to ECP. Post-tetanic potentiation (PTP) correlates well with recruitment of SVs from RP. Neither PTP nor post-tetanic recruitment of SVs from RP occurs in memory mutants that have defects in the cAMP/PKA cascade. Cyotochalasin D slows mobilization of SVs from RP, suggesting involvement of actin filaments in SV movement. During repetitive nerve stimulation the ECP is replenished, while RP replenishment occurs after tetanic stimulation in the absence of external Ca(2+). Mobilization of internal Ca(2+) stores underlies RP replenishment. SV dynamics is involved in synaptic plasticity and D NMJs are suitable for further studies.
机译:果蝇神经肌肉接头(D NMJs)具有延展性,其突触强度随活动而变化。突触前囊泡(SV)的动员和募集以及突触前末端中SV池的补充都参与了对突触功效的控制。我们使用荧光苯乙烯基染料FM1-43研究了SV的动力学,该染料在胞吞过程中被加载到SV中,在胞吐过程中被释放,并确定了两个SV池。 exo / endo循环池(ECP)在低频神经刺激过程中加载FM1-43,并在高K(+)诱导的胞吐过程中释放FM1-43。 ECP位于突触前按钮周围的释放位置附近。储备池(RP)仅在高频刺激期间加载和卸载,并且主要位于boutons的中心。 ECP的大小与低频神经元放电过程中突触传递的功效密切相关。 cAMP的增加有助于SV从RP移动到ECP。破伤风后增强(PTP)与从RP募集SV密切相关。在cAMP / PKA级联中存在缺陷的记忆突变体中,既不发生PTP也不发生从RP的tetanic募集。细胞松弛素D减慢了RP从SV的动员,表明肌动蛋白丝参与SV运动。在重复性神经刺激过程中,ECP被补充,而强直性刺激后在没有外部Ca(2+)的情况下发生RP补充。内部Ca(2+)存储的动员是RP补充的基础。 SV动力学参与突触可塑性,D NMJ适合进一步研究。

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