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Resolving single membrane fusion events on planar pore-spanning membranes

机译:解决平面孔跨膜上的单膜融合事件

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摘要

Even though a number of different in vitro fusion assays have been developed to analyze protein mediated fusion, they still only partially capture the essential features of the in vivo situation. Here we established an in vitro fusion assay that mimics the fluidity and planar geometry of the cellular plasma membrane to be able to monitor fusion of single protein-containing vesicles. As a proof of concept, planar pore-spanning membranes harboring SNARE-proteins were generated on highly ordered functionalized 1.2 μm-sized pore arrays in Si3N4. Full mobility of the membrane components was demonstrated by fluorescence correlation spectroscopy. Fusion was analyzed by two color confocal laser scanning fluorescence microscopy in a time resolved manner allowing to readily distinguish between vesicle docking, intermediate states such as hemifusion and full fusion. The importance of the membrane geometry on the fusion process was highlighted by comparing SNARE-mediated fusion with that of a minimal SNARE fusion mimetic.
机译:尽管已开发出许多不同的体外融合测定法来分析蛋白质介导的融合,但它们仍仅部分捕获体内情况的基本特征。在这里,我们建立了一种体外融合测定法,该方法能够模拟细胞质膜的流动性和平面几何形状,从而能够监测单个含有蛋白质的囊泡的融合。作为概念的证明,在SN3N4中高度有序的功能化的1.2μμm尺寸的孔阵列上生成了带有SNARE蛋白的平面孔跨膜。膜成分的完全迁移性通过荧光相关光谱法证实。通过两种颜色的共聚焦激光扫描荧光显微镜以时间分辨的方式分析融合,从而易于区分囊泡对接,中间状态(例如半融合)和完全融合。通过将SNARE介导的融合与最小的SNARE融合模拟物进行比较,突出了膜几何形状对融合过程的重要性。

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