National Institute of Neurological Disorders and Stroke, Bethesda, Maryland 20892.
J Neurosci. 2014 Feb 12;34(7):2652-9. doi: 10.1523/JNEUROSCI.3582-13.2014.
A large number of studies suggest that calcium triggers and accelerates vesicle endocytosis at many synapses and non-neuronal secretory cells. However, many studies show that prolonging the duration of the stimulation train, which induces more calcium influx, slows down endocytosis; and several studies suggest that instead of triggering endocytosis, calcium actually inhibits endocytosis. Here we addressed this apparent conflict at a large nerve terminal, the calyx of Held in rat brainstem, in which recent studies suggest that transient calcium increase up to tens of micromolar concentration at the micro/nano domain triggers endocytosis. By dialyzing 0-1 μM calcium into the calyx via a whole-cell pipette, we found that slow endocytosis was inhibited by calcium dialysis in a concentration-dependent manner. Thus, prolonged, small, and global calcium increase inhibits endocytosis, whereas transient and large calcium increase at the micro/nano domain triggers endocytosis and facilitates endocytosis. This yin and yang effect of calcium may reconcile apparent conflicts regarding whether calcium accelerates or inhibits endocytosis. Whether endocytosis is fast or slow depends on the net outcome between the yin and yang effect of calcium.
大量研究表明,钙在许多突触和非神经元分泌细胞中触发并加速囊泡内吞作用。然而,许多研究表明,延长刺激列车的持续时间,这会导致更多的钙内流,会减缓内吞作用;并且有几项研究表明,钙实际上抑制了内吞作用,而不是触发内吞作用。在这里,我们在大鼠脑干中的大型神经末梢—— Held 帽中解决了这个明显的冲突,最近的研究表明,在微/纳米域中,短暂的钙增加到数十微摩尔浓度会触发内吞作用。通过用全细胞玻璃微电极将 0-1 μM 的钙灌流到 Held 帽中,我们发现钙灌流以浓度依赖的方式抑制缓慢的内吞作用。因此,持续时间长、幅度小、整体钙增加会抑制内吞作用,而微/纳米域中短暂和大的钙增加会触发内吞作用并促进内吞作用。钙的这种阴阳效应可能调和了关于钙是加速还是抑制内吞作用的明显冲突。内吞作用是快还是慢取决于钙的阴阳效应之间的净结果。