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Cross-talk between Rho and Rac GTPases drives deterministic exploration of cellular shape space and morphological heterogeneity

机译:Rho和Rac GTPases之间的串扰推动了细胞形状空间和形态异质性的确定性探索

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摘要

One goal of cell biology is to understand how cells adopt different shapes in response to varying environmental and cellular conditions. Achieving a comprehensive understanding of the relationship between cell shape and environment requires a systems-level understanding of the signalling networks that respond to external cues and regulate the cytoskeleton. Classical biochemical and genetic approaches have identified thousands of individual components that contribute to cell shape, but it remains difficult to predict how cell shape is generated by the activity of these components using bottom-up approaches because of the complex nature of their interactions in space and time. Here, we describe the regulation of cellular shape by signalling systems using a top-down approach. We first exploit the shape diversity generated by systematic RNAi screening and comprehensively define the shape space a migratory cell explores. We suggest a simple Boolean model involving the activation of Rac and Rho GTPases in two compartments to explain the basis for all cell shapes in the dataset. Critically, we also generate a probabilistic graphical model to show how cells explore this space in a deterministic, rather than a stochastic, fashion. We validate the predictions made by our model using live-cell imaging. Our work explains how cross-talk between Rho and Rac can generate different cell shapes, and thus morphological heterogeneity, in genetically identical populations.
机译:细胞生物学的一个目标是了解细胞如何响应环境和细胞条件的变化而采取不同的形状。要获得对细胞形状与环境之间关系的全面了解,需要对响应外部信号并调节细胞骨架的信号网络进行系统级的了解。经典的生化和遗传方法已经鉴定出成千上万个影响细胞形状的单个成分,但是由于它们在空间和空间中相互作用的复杂性,使用自下而上的方法仍然难以预测这些成分的活动如何产生细胞形状。时间。在这里,我们描述了使用自上而下的方法通过信号系统调节细胞形状的过程。我们首先利用系统性RNAi筛选产生的形状多样性,并全面定义迁移细胞探索的形状空间。我们建议一个简单的布尔模型,涉及在两个区室中激活Rac和Rho GTPases,以解释数据集中所有细胞形状的基础。至关重要的是,我们还生成了概率图形模型,以显示细胞如何以确定性而非随机的方式探索该空间。我们使用活细胞成像验证了我们的模型做出的预测。我们的工作解释了Rho和Rac之间的串扰如何在基因相同的种群中产生不同的细胞形状,从而导致形态异质性。

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