首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Correlative Light-Electron Microscopy Reveals the Tubular-Saccular Ultrastructure of Carriers Operating between Golgi Apparatus and Plasma Membrane
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Correlative Light-Electron Microscopy Reveals the Tubular-Saccular Ultrastructure of Carriers Operating between Golgi Apparatus and Plasma Membrane

机译:相关的光电子显微镜显示高尔基体和血浆膜之间的载体的管状囊超微结构。

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摘要

Transport intermediates (TIs) have a central role in intracellular traffic, and much effort has been directed towards defining their molecular organization. Unfortunately, major uncertainties remain regarding their true structure in living cells. To address this question, we have developed an approach based on the combination of the green fluorescent protein technology and correlative light-electron microscopy, by which it is possible to monitor an individual carrier in vivo and then take a picture of its ultrastructure at any moment of its lifecycle. We have applied this technique to define the structure of TIs operating from the Golgi apparatus to the plasma membrane, whose in vivo dynamics have been characterized recently by light microscopy. We find that these carriers are large (ranging from 0.3–1.7 μm in maximum diameter, nearly half the size of a Golgi cisterna), comprise almost exclusively tubular-saccular structures, and fuse directly with the plasma membrane, sometimes minutes after docking to the fusion site.
机译:运输中间体(TIs)在细胞内运输中起着核心作用,并且已经进行了很多努力来确定其分子组织。不幸的是,关于它们在活细胞中的真实结构仍存在主要不确定性。为了解决这个问题,我们开发了一种基于绿色荧光蛋白技术和相关光电子显微镜技术的方法,通过该方法可以在体内监测单个载体,然后随时对其超微结构进行拍照其生命周期。我们已经应用了这项技术来定义从高尔基体到质膜的TI的结构,最近通过光学显微镜对它的体内动力学进行了表征。我们发现这些载体很大(最大直径范围为0.3–1.7μm,几乎是高尔基池的大小的一半),几乎仅包含管状囊状结构,并直接与质膜融合,有时在对接至融合部位。

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