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首页> 外文期刊>Cell adhesion & migration >Hybrid mechanosensing system to generate the polarity needed for migration in fish keratocytes
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Hybrid mechanosensing system to generate the polarity needed for migration in fish keratocytes

机译:混合机械传感系统,可产生鱼角质细胞迁移所需的极性

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Crawling cells can generate polarity for migration in response to forces applied from the substratum. Such reaction varies according to cell type: there are both fast- and slow-crawling cells. In response to periodic stretching of the elastic substratum, the intracellular stress fibers in slow-crawling cells, such as fibroblasts, rearrange themselves perpendicular to the direction of stretching, with the result that the shape of the cells extends in that direction; whereas fast-crawling cells, such as neutrophil-like differentiated HL-60 cells and Dictyostelium cells, which have no stress fibers, migrate perpendicular to the stretching direction. Fish epidermal keratocytes are another type of fast-crawling cell. However, they have stress fibers in the cell body, which gives them a typical slow-crawling cell structure. In response to periodic stretching of the elastic substratum, intact keratocytes rearrange their stress fibers perpendicular to the direction of stretching in the same way as fibroblasts and migrate parallel to the stretching direction, while blebbistatin-treated stress fiber-less keratocytes migrate perpendicular to the stretching direction, in the same way as seen in HL-60 cells and Dictyostelium cells. Our results indicate that keratocytes have a hybrid mechanosensing system that comprises elements of both fast- and slow-crawling cells, to generate the polarity needed for migration.
机译:爬行的细胞可以响应于从基质施加的力而产生迁移的极性。这种反应根据细胞类型而异:同时存在快速爬行和缓慢爬行的细胞。响应于弹性基质的周期性拉伸,缓慢爬行的细胞(如成纤维细胞)中的细胞内应力纤维会垂直于拉伸方向重新排列,结果是细胞的形状沿该方向延伸。而没有应力纤维的快速爬行细胞(如嗜中性粒细胞样分化的HL-60细胞和盘基网状细胞)则垂直于拉伸方向迁移。鱼的表皮角化细胞是另一种快速爬行的细胞。但是,它们在细胞体内具有应力纤维,这使它们具有典型的缓慢爬行的细胞结构。响应于弹性基质的周期性拉伸,完整的角膜细胞以与成纤维细胞相同的方式垂直于拉伸方向重新排列其应力纤维,并平行于拉伸方向迁移,而经珠蛋白抑素处理的无应力纤维性角膜细胞垂直于拉伸方向迁移方向,与在HL-60细胞和Dictyostelium细胞中观察到的方式相同。我们的结果表明,角膜细胞具有混合的机械传感系统,该系统包含快速爬行和缓慢爬行细胞的元素,以产生迁移所需的极性。

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