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Counting molecules in single organelles with superresolution microscopy allows tracking of the endosome maturation trajectory

机译:利用超高分辨率显微镜对单个细胞器中的分子进行计数可以追踪内体的成熟轨迹

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摘要

Cells tightly regulate trafficking of intracellular organelles, but a deeper understanding of this process is technically limited by our inability to track the molecular composition of individual organelles below the diffraction limit in size. Here we develop a technique for intracellularly calibrated superresolution microscopy that can measure the size of individual organelles as well as accurately count absolute numbers of molecules, by correcting for undercounting owing to immature fluorescent proteins and overcounting owing to fluorophore blinking. Using this technique, we characterized the size of individual vesicles in the yeast endocytic pathway and the number of accessible phosphatidylinositol 3-phosphate binding sites they contain. This analysis reveals a characteristic vesicle maturation trajectory of composition and size with both stochastic and regulated components. The trajectory displays some cell-to-cell variability, with smaller variation between organelles within the same cell. This approach also reveals mechanistic information on the order of events in this trajectory: Colocalization analysis with known markers of different vesicle maturation stages shows that phosphatidylinositol 3-phosphate production precedes fusion into larger endosomes. This single-organelle analysis can potentially be applied to a range of small organelles to shed light on their precise composition/structure relationships, the dynamics of their regulation, and the noise in these processes.
机译:细胞严格调节细胞内细胞器的运输,但对这一过程的更深入了解在技术上受到我们无法追踪单个细胞器分子大小低于衍射极限的限制。在这里,我们开发了一种用于细胞内校准的超分辨率显微镜的技术,该技术可以通过校正由于未成熟的荧光蛋白引起的计数不足和由于荧光团闪烁而引起的计数过度,来测量单个细胞器的大小以及精确地计算分子的绝对数量。使用这项技术,我们表征了酵母内吞途径中单个囊泡的大小以及它们所包含的可及的磷脂酰肌醇3-磷酸结合位点的数量。该分析揭示了具有随机和调节成分的组成和大小的特征性囊泡成熟轨迹。该轨迹显示出一些细胞间差异,同一细胞内细胞器之间的差异较小。这种方法还揭示了有关该轨迹中事件顺序的机械信息:与不同囊泡成熟阶段的已知标记物的共定位分析表明,磷脂酰肌醇3-磷酸的产生先于融合入较大的内体中。这种单细胞器分析可潜在地应用于一系列小细胞器,以阐明它们的精确组成/结构关系,调控动态以及这些过程中的噪音。

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