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In vivo selective cytoskeleton dynamics quantification in interphase cells induced by pulsed ultraviolet laser nanosurgery

机译:脉冲紫外激光纳米手术诱导的相间细胞的体内选择性细胞骨架动力学定量

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We report on the manipulation of intracellular filaments using a nanosurgery system based on a subnanosecond pulsed UV laser optimized for the localized severing of biological polymers. By inducing artificial catastrophe of selected microtubules (MTs), we perform shrinkage-rate measurements in interphase Ptk-2 cells throughout the entire cell. We quantify the impact of two labeling methods and three fluorescent markers, showing a 25% faster depolymerization with Alexa-488 tubulin compared with Rhodamine and yellow fluorescent protein (YFP) tubulins and a 20% higher variability induced by microinjection compared with stable transfection. Using EB3-GFP as a tip marker, we establish a new protocol to measure shrinkage rate, growth rate and rescue frequency simultaneously with high temporal and spatial specificity in live cells. As our analysis shows, laser-induced MT dynamics are physiologically relevant. The high statistical efficiency that the method offers in terms of numbers of measured events and therefore reduced standard deviations represents an important quantitative improvement in the measurement of dynamic instability parameters in vivo. We extend the application of the method by demonstrating induced dynamic behavior of actin-stress fibers after severing. This new method enables the quantitative investigation of cytoskeleton dynamics in a local confinement.
机译:我们报告了基于亚纳秒脉冲紫外激光的纳米外科系统对细胞内细丝的操纵,该激光优化了生物聚合物的局部切断。通过诱导选定的微管(MTs)的人为灾难,我们在整个细胞中的相间Ptk-2细胞中进行收缩率测量。我们量化了两种标记方法和三种荧光标记的影响,与罗丹明和黄色荧光蛋白(YFP)微管蛋白相比,Alexa-488微管蛋白的解聚反应快25%,与稳定转染相比,显微注射诱导的变异性高20%。我们使用EB3-GFP作为尖端标记,我们建立了同时在活细胞中具有高时空特异性的同时测量收缩率,生长率和拯救频率的新协议。正如我们的分析所示,激光诱发的MT动力学在生理上是相关的。该方法提供了较高的统计效率,从而可测量事件的数量,因此减少了标准偏差,这代表了体内动态不稳定性参数的测量方面的重要定量改进。我们通过展示切断后肌动蛋白应力纤维的诱导动态行为来扩展该方法的应用。这种新方法可以在局部范围内对细胞骨架动力学进行定量研究。

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