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细胞形状和取向控制电化学趋性的准确性。

Cell shape and orientation control galvanotactic accuracy.

机构信息

Department of Biophysics, Johns Hopkins University, Baltimore, MD 21218, USA.

Department of Physics & Astronomy, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Soft Matter. 2024 Nov 13;20(44):8866-8887. doi: 10.1039/d4sm00952e.

Abstract

Eukaryotic cells sense and follow electric fields during wound healing and embryogenesis - this is called galvanotaxis. Galvanotaxis is believed to be driven by the redistribution of "sensors" - potentially transmembrane proteins or other molecules - through electrophoresis and electroosmosis. Here, we update our previous model of the limits of galvanotaxis due to the stochasticity of sensor movements to account for cell shape and orientation. Computing the Fisher information shows that, in principle, cells have more information about the electric field direction when their long axis is parallel to the field. However, for weak fields, maximum-likelihood estimators may have lower variability when the cell's long axis is perpendicular to the field. In an alternate possibility, we find that if cells instead estimate the field direction by taking the average of all the sensor locations as its directional cue ("vector sum"), this introduces a bias towards the short axis, an effect not present for isotropic cells. We also explore the possibility that cell elongation arises downstream of sensor redistribution. We argue that if sensors migrate to the cell's rear, the cell will tend to expand perpendicular the field - as is more commonly observed - but if sensors migrate to the front, the cell will tend to elongate parallel to the field.

摘要

真核细胞在伤口愈合和胚胎发生过程中感知和遵循电场,这被称为电趋性。电趋性被认为是由“传感器”(可能是跨膜蛋白或其他分子)通过电泳和电渗重新分布驱动的。在这里,我们更新了我们之前关于由于传感器运动的随机性而导致电趋性极限的模型,以考虑细胞形状和取向。计算 Fisher 信息表明,原则上,当细胞的长轴与电场平行时,它们关于电场方向的信息更多。然而,对于弱电场,当细胞的长轴垂直于电场时,最大似然估计器的可变性可能更低。在另一种可能性中,我们发现,如果细胞通过将所有传感器位置的平均值作为其方向提示(“向量和”)来估计场方向,则会引入偏向短轴的偏差,而各向同性细胞则没有这种偏差。我们还探讨了细胞伸长是否是传感器重新分布的下游事件。我们认为,如果传感器迁移到细胞的后部,细胞将倾向于垂直于电场扩展——这是更常见的观察结果——但如果传感器迁移到前部,细胞将倾向于沿电场平行方向伸长。

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