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Navigation of Chemotactic Cells by Parallel Signaling to Pseudopod Persistence and Orientation

机译:趋化细胞的并行信号导航到伪足的持久性和方向。

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摘要

The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent work shows that shallow chemoattractant gradients do not induce the generation of pseudopods, as has been predicted in many models. This poses the question of how else cells can steer towards chemoattractants. Here we use a new computational algorithm to analyze the extension of pseudopods by Dictyostelium cells. We show that a shallow gradient of cAMP induces a small bias in the direction of pseudopod extension, without significantly affecting parameters such as pseudopod frequency or size. Persistent movement, caused by alternating left/right splitting of existing pseudopodia, amplifies the effects of this bias by up to 5-fold. Known players in chemotactic pathways play contrasting parts in this mechanism; PLA2 and cGMP signal to the cytoskeleton to regulate the splitting process, while PI 3-kinase and soluble guanylyl cyclase mediate the directional bias. The coordinated regulation of pseudopod generation, orientation and persistence by multiple signaling pathways allows eukaryotic cells to detect extremely shallow gradients.
机译:趋化性机制是现代细胞生物学中最有趣的问题之一。最近的工作表明,如许多模型中所预测的那样,较浅的趋化因子梯度不会诱导假足的产生。这就提出了一个问题,即其他细胞如何可以引导趋化剂。在这里,我们使用一种新的计算算法来分析Dictyostelium细胞假足的扩展。我们表明,cAMP的浅梯度会在伪足扩展的方向上引起较小的偏差,而不会显着影响诸如伪足频率或大小之类的参数。由现有假足的左/右交替交替引起的持续运动将这种偏倚的影响放大了多达5倍。趋化途径中的已知参与者在该机制中起相反的作用。 PLA2和cGMP向细胞骨架发出信号以调节分裂过程,而PI 3激酶和可溶性鸟苷酸环化酶则介导方向偏差。伪信号产生,方向和持久性的多种信号通路的协调调节使真核细胞能够检测到非常浅的梯度。

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