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首页> 外文期刊>Journal of Cell Science >FRET imaging and statistical signal processing reveal positive and negative feedback loops regulating the morphology of randomly migrating HT-1080 cells
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FRET imaging and statistical signal processing reveal positive and negative feedback loops regulating the morphology of randomly migrating HT-1080 cells

机译:FRET成像和统计信号处理揭示了正向和负向反馈回路,可调节随机迁移的HT-1080细胞的形态

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摘要

Cell migration plays an important role in many physiological processes. Rho GTPases (Rac1, Cdc42, RhoA) and phosphatidylinositols have been extensively studied in directional cell migration. However, it remains unclear how Rho GTPases and phosphatidylinositols regulate random cell migration in space and time. We have attempted to address this issue using fluorescence resonance energy transfer (FRET) imaging and statistical signal processing. First, we acquired time-lapse images of random migration of HT-1080 fibrosarcoma cells expressing FRET biosensors of Rho GTPases and phosphatidyl inositols. We developed an image-processing algorithm to extract FRET values and velocities at the leading edge of migrating cells. Auto- and cross-correlation analysis suggested the involvement of feedback regulations among Rac1, phosphatidyl inositols and membrane protrusions. To verify the feedback regulations, we employed an acute inhibition of the signaling pathway with pharmaceutical inhibitors. The inhibition of actin polymerization decreased Rac1 activity, indicating the presence of positive feedback from actin polymerization to Rac1. Furthermore, treatment with PI3-kinase inhibitor induced an adaptation of Rac1 activity, i.e. a transient reduction of Rac1 activity followed by recovery to the basal level. In silico modeling that reproduced the adaptation predicted the existence of a negative feedback loop from Rac1 to actin polymerization. Finally, we identified MLCK as the probable controlling factor in the negative feedback. These findings quantitatively demonstrate positive and negative feedback loops that involve actin, Rac1 and MLCK, and account for the ordered patterns of membrane dynamics observed in randomly migrating cells.
机译:细胞迁移在许多生理过程中起着重要作用。 Rho GTPases(Rac1,Cdc42,RhoA)和磷脂酰肌醇已在定向细胞迁移中进行了广泛研究。然而,尚不清楚Rho GTPases和磷脂酰肌醇如何调节时空细胞的随机迁移。我们尝试使用荧光共振能量转移(FRET)成像和统计信号处理来解决此问题。首先,我们获得了表达Rho GTPases和磷脂酰肌醇的FRET生物传感器的HT-1080纤维肉瘤细胞随机迁移的延时图像。我们开发了一种图像处理算法来提取迁移细胞前端的FRET值和速度。自相关和互相关分析表明,Rac1,磷脂酰肌醇和膜突起之间存在反馈调节。为了验证反馈规则,我们采用了与药物抑制剂一起对信号通路进行急性抑制的方法。肌动蛋白聚合反应的抑制降低了Rac1活性,表明存在从肌动蛋白聚合反应到Rac1的正反馈。此外,用PI3-激酶抑制剂治疗诱导了Rac1活性的适应性,即Rac1活性的瞬时降低,随后恢复至基础水平。在计算机模拟中,再现了适应性的模型预测了从Rac1到肌动蛋白聚合反应的负反馈回路的存在。最后,我们将MLCK确定为负反馈中的可能控制因素。这些发现定量地证明了涉及肌动蛋白,Rac1和MLCK的正反馈和负反馈回路,并解释了在随机迁移的细胞中观察到的膜动力学的有序模式。

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