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New single-molecule speckle microscopy reveals modification of the retrograde actin flow by focal adhesions at nanometer scales

机译:新的单分子散斑显微镜技术揭示了纳米级粘着斑对逆行肌动蛋白血流的修饰

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摘要

Speckle microscopy directly visualizes the retrograde actin flow, which is believed to promote cell-edge protrusion when linked to focal adhesions (FAs). However, it has been argued that, due to rapid actin turnover, the use of green fluorescent protein-actin, the lack of appropriate analysis algorithms, and technical difficulties, speckle microscopy does not necessarily report the flow velocities of entire actin populations. In this study, we developed a new, user-friendly single-molecule speckle (SiMS) microscopy using DyLight dye-labeled actin. Our new SiMS method enables in vivo nanometer-scale displacement analysis with a low localization error of ±8-8.5 nm, allowing accurate flow-velocity measurement for actin speckles with lifetime <5 s. In lamellipodia, both short- and long-lived F-actin molecules flow with the same speed, indicating they are part of a single actin network. These results do not support coexistence of F-actin populations with different flow speeds, which is referred to as the lamella hypothesis. Mature FAs, but not nascent adhesions, locally obstruct the retrograde flow. Interestingly, the actin flow in front of mature FAs is fast and biased toward FAs, suggesting that mature FAs attract the flow in front and actively remodel the local actin network.
机译:散斑显微镜直接可视化逆行肌动蛋白流,据信当与粘着斑(FAs)连接时可促进细胞边缘突出。然而,有人认为,由于肌动蛋白的快速更新,绿色荧光蛋白-肌动蛋白的使用,缺乏适当的分析算法以及技术上的困难,散斑显微镜检查不一定能报告整个肌动蛋白群体的流速。在这项研究中,我们使用DyLight染料标记的肌动蛋白开发了一种新的,用户友好的单分子散斑(SiMS)显微镜。我们的新SiMS方法能够进行体内纳米级位移分析,并且具有±8-8.5 nm的低定位误差,从而可以对寿命<5 s的肌动蛋白散斑进行精确的流速测量。在lamellipodia中,短寿命和长寿命的F-肌动蛋白分子以相同的速度流动,这表明它们是单个肌动蛋白网络的一部分。这些结果不支持具有不同流速的F-肌动蛋白群体的共存,这被称为薄片假设。成熟的脂肪酸,但不是新生的粘连,局部阻碍逆行流动。有趣的是,成熟FA之前的肌动蛋白流量很快且偏向FA,这表明成熟FA吸引了前面的肌动蛋白并积极地重构了局部肌动蛋白网络。

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