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In Chemotaxing Fibroblasts Both High-Fidelity and Weakly Biased Cell Movements Track the Localization of PI3K Signaling

机译:在化学成纤维细胞中高保真和弱偏向的细胞运动都跟踪PI3K信号的定位

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摘要

Cell movement biased by a chemical gradient, or chemotaxis, coordinates the recruitment of cells and collective migration of cell populations. During wound healing, chemotaxis of fibroblasts is stimulated by platelet-derived growth factor (PDGF) and certain other chemoattractants. Whereas the immediate PDGF gradient sensing response has been characterized previously at the level of phosphoinositide 3-kinase (PI3K) signaling, the sensitivity of the response at the level of cell migration bias has not yet been studied quantitatively. In this work, we used live-cell total internal reflection fluorescence microscopy to monitor PI3K signaling dynamics and cell movements for extended periods. We show that persistent and properly aligned (i.e., high-fidelity) fibroblast migration does indeed correlate with polarized PI3K signaling; accordingly, this behavior is seen only under conditions of high gradient steepness (>10% across a typical cell length of 50 μm) and a certain range of PDGF concentrations. Under suboptimal conditions, cells execute a random or biased random walk, but nonetheless move in a predictable fashion according to the changing pattern of PI3K signaling. Inhibition of PI3K during chemotaxis is accompanied by loss of both cell-substratum contact and morphological polarity, but after a recovery period, PI3K-inhibited fibroblasts often regain the ability to orient toward the PDGF gradient.
机译:化学梯度或趋化性所偏向的细胞运动协调细胞的募集和细胞群体的集体迁移。在伤口愈合过程中,血小板衍生的生长因子(PDGF)和某些其他化学吸引剂刺激成纤维细胞的趋化性。尽管先前的PDGF梯度即时感应反应已在磷酸肌醇3激酶(PI3K)信号传导水平进行了表征,但尚未对细胞迁移偏向水平的响应敏感性进行定量研究。在这项工作中,我们使用活细胞全内反射荧光显微镜来长时间监视PI3K信号动力学和细胞运动。我们表明,持久且适当对齐(即高保真)的成纤维细胞迁移确实确实与极化的PI3K信号相关。因此,只有在高梯度陡度(在典型的50μm细胞长度上> 10%)和一定范围的PDGF浓度的条件下才能看到此行为。在次优条件下,细胞执行随机或偏向随机行走,但仍会根据PI3K信号的变化模式以可预测的方式移动。在趋化过程中对PI3K的抑制伴随着细胞-基质接触和形态极性的丧失,但是在恢复期之后,PI3K抑制的成纤维细胞通常恢复了朝向PDGF梯度的能力。

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