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神经分泌囊泡如何释放其内含物。

How neurosecretory vesicles release their cargo.

作者信息

Scalettar Bethe A

机构信息

Department of Physics, Lewis & Clark College, Portland, OR 97219, USA.

出版信息

Neuroscientist. 2006 Apr;12(2):164-76. doi: 10.1177/1073858405284258.

Abstract

Neurons and related cell types often contain two major classes of neurosecretory vesicles, synaptic vesicles (SVs) and dense-core granules (DCGs), which store and release distinct cargo. SVs store and release classic neurotransmitters, which facilitate propagation of action potentials across the synaptic cleft, whereas DCGs transport, store, and release hormones, proteins, and neuropeptides, which facilitate neuronal survival, synaptic transmission, and learning. Over the past few years, there has been a major surge in our understanding of many of the key molecular mechanisms underlying cargo release from SVs and DCGs. This surge has been driven largely by the use of fluorescence microscopy (especially total internal reflection fluorescence microscopy) to visualize SVs or DCGs in living cells. This review highlights some of the recent insights into cargo release from neurosecretory vesicles provided by fluorescence microscopy, with emphasis on DCGs.

摘要

神经元及相关细胞类型通常包含两大类神经分泌囊泡,即突触囊泡(SVs)和致密核心颗粒(DCGs),它们储存并释放不同的货物。突触囊泡储存并释放经典神经递质,这些神经递质有助于动作电位在突触间隙的传播,而致密核心颗粒则运输、储存和释放激素、蛋白质和神经肽,这些物质有助于神经元存活、突触传递和学习。在过去几年中,我们对突触囊泡和致密核心颗粒释放货物的许多关键分子机制的理解有了重大进展。这一进展主要得益于利用荧光显微镜(尤其是全内反射荧光显微镜)来观察活细胞中的突触囊泡或致密核心颗粒。本综述重点介绍了荧光显微镜在神经分泌囊泡货物释放方面的一些最新见解,重点是致密核心颗粒。

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