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Visualizing Intracellular SNARE Trafficking by Fluorescence Lifetime Imaging Microscopy

机译:通过荧光寿命成像显微镜可视化细胞内网罗贩运。

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摘要

Soluble N-ethylmaleimide sensitive fusion protein (NSF) attachment protein receptor (SNARE) proteins are key for membrane trafficking, as they catalyze membrane fusion within eukaryotic cells. The SNARE protein family consists of about 36 different members. Specific intracellular transport routes are catalyzed by specific sets of 3 or 4 SNARE proteins that thereby contribute to the specificity and fidelity of membrane trafficking. However, studying the precise function of SNARE proteins is technically challenging, because SNAREs are highly abundant and functionally redundant, with most SNAREs having multiple and overlapping functions. In this protocol, a new method for the visualization of SNARE complex formation in live cells is described. This method is based on expressing SNARE proteins C-terminally fused to fluorescent proteins and measuring their interaction by Förster resonance energy transfer (FRET) employing fluorescence lifetime imaging microscopy (FLIM). By fitting the fluorescence lifetime histograms with a multicomponent decay model, FRET-FLIM allows (semi-)quantitative estimation of the fraction of the SNARE complex formation at different vesicles. This protocol has been successfully applied to visualize SNARE complex formation at the plasma membrane and at endosomal compartments in mammalian cell lines and primary immune cells, and can be readily extended to study SNARE functions at other organelles in animal, plant, and fungal cells.
机译:可溶性N-乙基马来酰亚胺敏感融合蛋白(NSF)附着蛋白受体(SNARE)蛋白是膜运输的关键,因为它们催化真核细胞内的膜融合。 SNARE蛋白家族由约36个不同的成员组成。特定的3或4种SNARE蛋白可催化特定的细胞内转运途径,从而有助于膜运输的特异性和保真度。但是,研究SNARE蛋白质的精确功能在技术上具有挑战性,因为SNARE高度丰富且功能上是多余的,大多数SNARE具有多重和重叠的功能。在该协议中,描述了一种可视化活细胞中SNARE复合物形成的新方法。该方法基于表达C末端与荧光蛋白融合的SNARE蛋白,并使用荧光寿命成像显微镜(FLIM)通过Förster共振能量转移(FRET)测量其相互作用。通过用多组分衰减模型拟合荧光寿命直方图,FRET-FLIM可以(半)定量估计不同囊泡中SNARE复合物的形成比例。该方案已成功应用于可视化哺乳动物细胞系和原代免疫细胞中质膜和内体区隔处的SNARE复合物,并且可以轻松扩展以研究SNARE在动植物,真菌细胞中其他细胞器上的功能。

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