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Cell biology of Ca2+-triggered exocytosis

机译:Ca2 +触发的胞吐作用的细胞生物学

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Ca2+ triggers many forms of exocytosis in different types of eukaryotic cells, for example synaptic vesicle exocytosis in neurons, granule exocytosis in mast cells, and hormone exocytosis in endocrine cells. Work over the past two decades has shown that synaptotagmins function as the primary Ca2+-sensors for most of these forms of exocytosis, and that synaptotagmins act via Ca2+-dependent interactions with both the fusing phospholipid membranes and the membrane fusion machinery. However, some forms of Ca2+-induced exocytosis may utilize other, as yet unidentified Ca2+-sensors, for example, slow synaptic exocytosis mediating asynchronous neurotransmitter release. In the following overview, we will discuss the synaptotagmin-based mechanism of Ca2+-triggered exocytosis in neurons and neuroendocrine cells, and its potential extension to other types of Ca2+-stimulated exocytosis for which no synaptotagmin Ca2+-sensor has been identified.
机译:Ca2 +在不同类型的真核细胞中触发多种形式的胞吐作用,例如神经元中的突触囊泡胞吐作用,肥大细胞中的颗粒胞吐作用和内分泌细胞中的激素胞吐作用。过去二十年的工作表明,突触结合蛋白可作为大多数此类胞吐作用的主要Ca2 +传感器,并且突触结合蛋白通过Ca2 +依赖性与融合磷脂膜和膜融合机制的相互作用而起作用。但是,某些形式的Ca2 +诱导的胞吐作用可能会利用其他尚未识别的Ca2 +传感器,例如,缓慢的突触胞吐作用介导异步神经递质的释放。在下面的概述中,我们将讨论神经元和神经内分泌细胞中基于Ca2 +触发的胞外突触的基于突触素的机制,以及其潜在的扩展至尚未发现突触素的Ca2 +传感器的其他类型的Ca2 +刺激的胞吐作用。

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