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Directional Persistence of EGF-Induced Cell Migration Is Associated with Stabilization of Lamellipodial Protrusions

机译:EGF诱导的细胞迁移的方向性持久性与Lamellipodial突起的稳定有关。

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摘要

Migrating cells can sustain a relatively constant direction of lamellipodial protrusion and locomotion over timescales ranging from minutes to hours. However, individual waves of lamellipodial extension occur over much shorter characteristic times. Little understanding exists regarding how cells might integrate biophysical processes across these disparate timescales to control the directional persistence of locomotion. We address this issue by examining the effects of epidermal growth factor (EGF) stimulation on long-timescale directional persistence and short-timescale lamellipodial dynamics of EGF receptor-transfected Chinese hamster ovary cells migrating on fibronectin-coated substrata. Addition of EGF increased persistence, with the magnitude of increase correlating with fibronectin coating concentration. Kymographic analysis of EGF-stimulated lamellipodial dynamics revealed that the temporal stability of lamellipodial protrusions similarly increased with fibronectin concentration. A soluble RGD peptide competitor reduced both the persistence of long-timescale cell paths and the stability of short-timescale membrane protrusions, indicating that cell-substratum adhesion concomitantly influences lamellipodial dynamics and directional persistence. These results reveal the importance of adhesion strength in regulating the directional motility of cells and suggest that the short-timescale kinetics of adhesion complex formation may play a key role in modulating directional persistence over much longer timescales.
机译:迁移细胞可以在几分钟到几小时的时间范围内维持相对恒定的层状脂质体伸出和运动方向。但是,层状脂质体延伸的单个波发生在更短的特征时间内。关于细胞如何在这些不同的时间尺度上整合生物物理过程以控制运动的方向性持久性,人们鲜有了解。我们通过检查表皮生长因子(EGF)刺激对在纤连蛋白包被的基质上迁移的EGF受体转染的中国仓鼠卵巢细胞的长期尺度方向持久性和短时尺度lalamlipodial动态的影响来解决此问题。 EGF的添加增加了持久性,且增加的幅度与纤连蛋白涂层浓度有关。经EGF刺激的片状脂质体动力学的运动图谱分析显示,片状脂质体突起的时间稳定性随着纤连蛋白浓度的增加而类似地增加。可溶性RGD肽竞争者减少了长期尺度的细胞路径的持久性和短期尺度的膜突起的稳定性,表明细胞-基质粘附同时影响了层状脂质动力学和方向持久性。这些结果揭示了粘附强度在调节细胞定向运动中的重要性,并表明粘附复合物形成的短时程动力学可能在更长的时程中调节定向持久性中起关键作用。

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