首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Phagosome Closure Assay to Visualize Phagosome Formation in Three Dimensions Using Total Internal Reflection Fluorescent Microscopy (TIRFM)
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Phagosome Closure Assay to Visualize Phagosome Formation in Three Dimensions Using Total Internal Reflection Fluorescent Microscopy (TIRFM)

机译:使用全内反射荧光显微镜(TIRFM)进行三维可视化的噬菌体封闭测定

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摘要

Phagocytosis is a mechanism used by specialized cells to internalize and eliminate microorganisms or cellular debris. It relies on profound rearrangements of the actin cytoskeleton that is the driving force for plasma membrane extension around the particle. In addition, efficient engulfment of large material relies on focal exocytosis of intracellular compartments. This process is highly dynamic and numerous molecular players have been described to have a role during phagocytic cup formation. The precise regulation in time and space of all of these molecules, however, remains elusive. In addition, the last step of phagosome closure has been very difficult to observe because inhibition by RNA interference or dominant negative mutants often results in stalled phagocytic cup formation. We have set up a dedicated experimental approach using total internal reflection fluorescence microscopy (TIRFM) combined with epifluorescence to monitor step by step the extension of pseudopods and their tips in a phagosome growing around a particle loosely bound to a coverslip. This method allows us to observe, with high resolution the very tips of the pseudopods and their fusion during closure of the phagosome in living cells for two different fluorescently tagged proteins at the same time.
机译:吞噬作用是专门细胞用于内化和消除微生物或细胞碎片的机制。它依赖于肌动蛋白细胞骨架的深刻重排,而肌动蛋白细胞骨架是质膜在颗粒周围延伸的驱动力。另外,大物质的有效吞噬依赖于细胞内区室的局部胞吐作用。该过程是高度动态的,并且已经描述了许多分子参与物在吞噬杯形成过程中起作用。然而,所有这些分子在时间和空间上的精确调节仍然难以捉摸。此外,吞噬体封闭的最后一步很难观察到,因为被RNA干扰或显性负突变体抑制通常会导致吞噬杯的停滞。我们已经建立了一种专用的实验方法,该方法使用全内反射荧光显微镜(TIRFM)与落射荧光相结合,逐步监测假小脚及其尖端在围绕与盖玻片松散结合的颗粒周围生长的吞噬体中的延伸。这种方法使我们可以同时观察两种不同荧光标记蛋白的活细胞吞噬体封闭过程中假足的尖端及其融合情况。

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