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Three-Dimensional Tracking of Single Secretory Granules in Live PC12 Cells

机译:活PC12细胞中单个分泌颗粒的三维跟踪

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摘要

Deconvolution wide-field fluorescence microscopy and single-particle tracking were used to study the three-dimensional mobility of single secretory granules in live PC12 cells. Acridine orange-labeled granules were found to travel primarily in random and caged diffusion, whereas only a small fraction of granules traveled in directed fashion. High K+ stimulation increased significantly the percentage of granules traveling in directed fashion. By dividing granules into the near-membrane group (within 1 μm from the plasma membrane) and cytosolic group, we have revealed significant differences between these two groups of granules in their mobility. The mobility of these two groups of granules is also differentially affected by disruption of F-actin, suggesting different mechanisms are involved in the motion of the two groups of granules. Our results demonstrate that combined deconvolution and single-particle tracking may find its application in three-dimensional tracking of long-term motion of granules and elucidating the underlying mechanisms.
机译:反卷积宽场荧光显微镜和单粒子跟踪用于研究活PC12细胞中单个分泌颗粒的三维迁移。发现cr啶橙标记的颗粒主要以无规和笼状扩散方式传播,而只有一小部分颗粒以定向方式传播。高K +刺激显着增加了以定向方式传播的颗粒的百分比。通过将颗粒分为近膜组(距质膜1μm以内)和细胞溶质组,我们发现这两组颗粒在迁移率上有显着差异。 F-肌动蛋白的破坏也对这两组颗粒的流动性产生了不同的影响,表明这两组颗粒的运动涉及不同的机制。我们的结果表明,反卷积和单粒子跟踪相结合可能会发现其在颗粒长期运动的三维跟踪中的应用,并阐明了潜在的机制。

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