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Modeling and Measuring Signal Relay in Noisy Directed Migration of Cell Groups

机译:嘈杂的小区组中的建模与测量信号继电器

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We develop a coarse-grained stochastic model for the influence of signal relay on the collective behavior of migrating Dictyostelium discoideum cells. In the experiment, cells display a range of collective migration patterns, including uncorrelated motion, formation of partially localized streams, and clumping, depending on the type of cell and the strength of the external, linear concentration gradient of the signaling molecule cyclic adenosine monophosphate (cAMP). From our model, we find that the pattern of migration can be quantitatively described by the competition of two processes, the secretion rate of cAMP by the cells and the degradation rate of cAMP in the gradient chamber. Model simulations are compared to experiments for a wide range of strengths of an external linear-gradient signal. With degradation, the model secreting cells form streams and efficiently transverse the gradient, but without degradation, we find that model secreting cells form clumps without streaming. This indicates that the observed effective collective migration in streams requires not only signal relay but also degradation of the signal. In addition, our model allows us to detect and quantify precursors of correlated motion, even when cells do not exhibit obvious streaming.
机译:我们开发了一种粗颗粒随机模型,用于信号继电器对迁移梗塞裂解细胞的集体行为的影响。在实验中,细胞显示一系列集体迁移模式,包括不相关的运动,部分局部流的形成,并根据信号分子环状腺苷的外部线性浓度梯度的类型和外部线性浓度梯度的强度(营)。从我们的模型中,我们发现迁移模式可以通过两种过程的竞争,细胞的分泌率和梯度室中的阵营的降解速率来定量描述。模型模拟与外部线性梯度信号的各种强度的实验进行了比较。通过降解,模型分泌细胞形成流并有效地横向横向梯度,但不降解,我们发现模型分泌细胞形成丛而不流媒体。这表明流中观察到的有效集体迁移不仅需要信号继电器,而且还需要信号中继而且还需要劣化信号。此外,我们的模型允许我们检测和量化相关运动的前体,即使电池不表现出明显的流媒体。

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