首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Simultaneous mapping of filamentous actin flow and turnover in migrating cells by quantitative fluorescent speckle microscopy.
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Simultaneous mapping of filamentous actin flow and turnover in migrating cells by quantitative fluorescent speckle microscopy.

机译:通过定量荧光散斑显微镜同时定位迁移细胞中丝状肌动蛋白的流量和周转率。

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We report advances in quantitative fluorescent speckle microscopy to generate simultaneous maps of cytoskeleton flow and rates of net assembly and disassembly in living cells. We apply this tool to analyze the filamentous actin (F-actin) dynamics at the front of migrating cells. F-actin turnover and flow are both known to be factors of cell locomotion. However, how they are orchestrated to produce directed cell movements is poorly understood. Our approach to data analysis allows us to examine their interdependence. Our maps confirm the previously described organization of flow into a lamellipodium and a lamellum, both exhibiting retrograde flow; and a convergence zone, where lamellum retrograde flow meets with slow anterograde flow of cortical F-actin at the ventral side of the cell body. The turnover maps show the well known actin polymerization at the leading edge, but also indicate that approximately 90% of the polymer disassembles at the lamellipodium-lamellum junction. Strong depolymerization is also found in the convergence zone, where meshwork contraction is prominent. To determine whether contraction and depolymerization are coupled events, we have treated cells with calyculin A, which is known to promote myosin activity. Stimulated contraction was accompanied by accelerated retrograde flow and increased depolymerization throughout the lamellum, whereas disassembly at the lamellipodium-lamellum junction remained unaffected. There appear to be two distinct depolymerization mechanisms, of which one depends directly on meshwork contraction.
机译:我们报告定量荧光散斑显微镜技术的进展,以生成同时发生的细胞骨架流图和活细胞中的净装配和拆卸速率。我们应用此工具来分析迁移细胞前端的丝状肌动蛋白(F-actin)动力学。 F-肌动蛋白的周转和流动都已知是细胞运动的因素。但是,如何协调他们如何产生定向的细胞运动知之甚少。我们的数据分析方法使我们能够检查它们的相互依赖性。我们的地图证实了先前描述的流向层状脂质体和层状组织的流动组织,两者均表现出逆行流动。汇合区,薄层逆行流动与细胞体腹侧皮质F-肌动蛋白的缓慢顺行流动相遇。周转图显示了众所周知的肌动蛋白在前沿的聚合,但也表明大约90%的聚合物在lalamlipodium-lamellum交界处分解。在网状结构收缩明显的会聚区也发现了强烈的解聚现象。为了确定收缩和解聚是否是偶合事件,我们用钙调蛋白A处理细胞,已知该蛋白可促进肌球蛋白的活性。刺激的收缩伴随着加速的逆行流动和整个薄片的增加的解聚,而在薄片脂质体-薄片连接处的拆卸仍然不受影响。似乎存在两种不同的解聚机理,其中一种直接取决于网状结构的收缩。

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