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Kinetics and regulation of fast endocytosis at hippocampal synapses.

机译:海马突触快速内吞的动力学和调控。

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Presynaptic nerve terminals often contain as few as a hundred vesicles and so must recycle them soon after exocytosis to preserve synaptic transmission and presynaptic morphology during repetitive firing. The kinetics and mechanisms of vesicular endocytosis and repriming have therefore been studied. Vesicles in hippocampal nerve terminals can become available to release their contents within approximately 40 s of the previous round of exocytosis. Studies using the styryl dye FM1-43 have estimated the time constant for endocytosis as approximately 20-30 s at least half of the total recycling time, which is much slower than endocytosis in other secretory systems. It seems paradoxical that the neurosecretory terminals that could benefit the most from rapid endocytosis do not use such a mechanism. Here we demonstrate the existence of fast endocytosis in hippocampal nerve terminals and derive its kinetics from fluorescence measurements using dyes with varying rates of membrane departitioning. The rapid mode of vesicular retrieval was much faster after exposure to staurosporine or elevated extracellular calcium. Thus hippocampal synapses take advantage of efficient mechanisms for endocytosis, and their vesicular retrieval is subject to modulatory control.
机译:突触前神经末梢通常含有少至一百个囊泡,因此在胞吐作用后必须立即回收它们,以在反复放电期间保持突触传递和突触前形态。因此,已经研究了水泡内吞和引发的动力学和机理。海马神经末梢的囊泡可在上一轮胞吐作用的约40 s内释放其内含物。使用苯乙烯基染料FM1-43进行的研究估计,内吞作用的时间常数至少约为总回收时间的一半,大约为20-30 s,这比其他分泌系统的内吞作用要慢得多。似乎很矛盾的是,可以从快速内吞作用中受益最大的神经分泌末端没有使用这种机制。在这里,我们证明了海马神经末梢中快速内吞作用的存在,并通过使用具有不同膜分离速率的染料进行荧光测量来得出其动力学。暴露于星形孢菌素或升高的细胞外钙后,水泡恢复的快速模式快得多。因此,海马突触利用了内吞作用的有效机制,并且它们的囊泡收回受到调节控制。

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