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The ubiquitous nature of multivesicular release

机译:多囊泡释放的普遍性

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摘要

'Simplicity is prerequisite for reliability' (E.W. Dijkstra [1]) Presynaptic action potentials trigger the fusion of vesicles to release neurotransmitter onto postsynaptic neurons. Each release site was originally thought to liberate at most one vesicle per action potential in a probabilistic fashion, rendering synaptic transmission unreliable. However, the simultaneous release of several vesicles, or multivesicular release (MVR), represents a simple mechanism to overcome the intrinsic unreliability of synaptic transmission. MVR was initially identified at specialized synapses but is now known to be common throughout the brain. MVR determines the temporal and spatial dispersion of transmitter, controls the extent of receptor activation, and contributes to adapting synaptic strength during plasticity and neuromodulation. MVR consequently represents a widespread mechanism that extends the dynamic range of synaptic processing.
机译:“简单性是可靠性的先决条件”(E.W. Dijkstra [1])突触前动作电位触发囊泡融合,将神经递质释放到突触后神经元上。最初,每个释放位点被认为以概率的方式每个动作电位最多释放一个囊泡,从而使突触传递不可靠。但是,几个囊泡的同时释放或多囊泡释放(MVR)代表了一种简单的机制,可以克服突触传递固有的不可靠性。 MVR最初是在专门的突触中发现的,但现在已知在整个大脑中很常见。 MVR决定了递质的时间和空间分散,控制受体激活的程度,并在可塑性和神经调节过程中有助于调节突触强度。因此,MVR代表了一种广泛的机制,可扩展突触处理的动态范围。

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