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Cell migration directionality and speed are independently regulated by RasG and Gβ in Dictyostelium cells in electrotaxis

机译:线粒体细胞电迁移中的RasG和Gβ独立调节细胞迁移方向和速度

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Motile cells manifest increased migration speed and directionality in gradients of stimuli, including chemoattractants, electrical potential and substratum stiffness. Here, we demonstrate thatDictyosteliumcells move directionally in response to an electric field (EF) with specific acceleration/deceleration kinetics of directionality and migration speed. Detailed analyses of the migration kinetics suggest that migration speed and directionality are separately regulated by Gβ and RasG, respectively, in EF-directed cell migration. Cells lacking Gβ, which is essential for all chemotactic responses inDictyostelium, showed EF-directed cell migration with the same increase in directionality in an EF as wild-type cells. However, these cells failed to show induction of the migration speed upon EF stimulation as much as wild-type cells. Loss of RasG, a key regulator of chemoattractant-directed cell migration, resulted in almost complete loss of directionality, but similar acceleration/deceleration kinetics of migration speed as wild-type cells. These results indicate that Gβ and RasG are required for the induction of migration speed and directionality, respectively, in response to an EF, suggesting separation of migration speed and directionality even with intact feedback loops between mechanical and signaling networks.
机译:运动细胞在包括化学吸引剂,电势和基质刚度的刺激梯度中表现出增加的迁移速度和方向性。在这里,我们证明了Dictyostelium细胞响应电场(EF)定向运动,并具有方向性和迁移速度的特定加速/减速动力学。对迁移动力学的详细分析表明,在EF定向的细胞迁移中,迁移速度和方向性分别受Gβ和RasG调节。缺乏Gβ的细胞(对Dictyostelium中的所有趋化反应都是必不可少的),它们显示了EF定向的细胞迁移,并且在EF中的定向性与野生型细胞相同。然而,这些细胞未能像野生型细胞一样在EF刺激下显示出对迁移速度的诱导。 RasG的丧失是化学引诱剂指导的细胞迁移的关键调节剂,导致方向性几乎完全丧失,但迁移速度的加速/减速动力学与野生型细胞相似。这些结果表明,响应于EF,Gβ和RasG分别是诱导迁移速度和方向性所必需的,这表明即使机械和信号网络之间存在完整的反馈回路,迁移速度和方向性也要分开。

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