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首页> 外文期刊>Neuron >Fast, Temperature-Sensitive and Clathrin-Independent Endocytosis at Central Synapses
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Fast, Temperature-Sensitive and Clathrin-Independent Endocytosis at Central Synapses

机译:快速,温度敏感和网格蛋白独立的内吞在中央突触。

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The fusion of neurotransmitter-filled vesicles during synaptic transmission is balanced by endocytotic membrane retrieval. Despite extensive research, the speed and mechanisms of synaptic vesicle endocytosis have remained controversial. Here, we establish low-noise time-resolved membrane capacitance measurements that allow monitoring changes in surface membrane area elicited by single action potentials and stronger stimuli with high-temporal resolution at physiological temperature in individual bona-fide mature central synapses. We show that single action potentials trigger very rapid endocytosis, retrieving presynaptic membrane with a time constant of 470 ms. This fast endocytosis is independent of clathrin but mediated by dynamin and actin. In contrast, stronger stimuli evoke a slower mode of endocytosis that is clathrin, dynamin, and actin dependent. Furthermore, the speed of endocytosis is highly temperature dependent with a Q(10) of similar to 3.5. These results demonstrate that distinct molecular modes of endocytosis with markedly different kinetics operate at central synapses.
机译:突触传递过程中充满神经递质的囊泡的融合通过细胞内膜恢复来平衡。尽管进行了广泛的研究,但突触小泡内吞的速度和机制仍存在争议。在这里,我们建立了低噪声的时间分辨膜电容测量值,该测量值可以监测单个动作电位和生理状态下在真实成熟的中央突触中具有较高时间分辨力的较强刺激物引起的表面膜面积变化。我们表明,单个动作电位触发非常快速的内吞作用,以470毫秒的时间常数检索突触前膜。这种快速的内吞作用独立于网格蛋白,但由动力蛋白和肌动蛋白介导。相反,较强的刺激会引起网格蛋白,动力蛋白和肌动蛋白依赖性的内吞作用的缓慢模式。此外,内吞作用的速度与温度高度相关,其Q(10)与3.5相似。这些结果证明具有明显不同动力学的内吞作用的不同分子模式在中央突触处起作用。

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