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Amoeboid Cells Use Protrusions for Walking Gliding and Swimming

机译:变形虫细胞将突起物用于行走滑行和游泳

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摘要

Amoeboid cells crawl using pseudopods, which are convex extensions of the cell surface. In many laboratory experiments, cells move on a smooth substrate, but in the wild cells may experience obstacles of other cells or dead material, or may even move in liquid. To understand how cells cope with heterogeneous environments we have investigated the pseudopod life cycle of wild type and mutant cells moving on a substrate and when suspended in liquid. We show that the same pseudopod cycle can provide three types of movement that we address as walking, gliding and swimming. In walking, the extending pseudopod will adhere firmly to the substrate, which allows cells to generate forces to bypass obstacles. Mutant cells with compromised adhesion can move much faster than wild type cells on a smooth substrate (gliding), but cannot move effectively against obstacles that provide resistance. In a liquid, when swimming, the extending pseudopods convert to side-bumps that move rapidly to the rear of the cells. Calculations suggest that these bumps provide sufficient drag force to mediate the observed forward swimming of the cell.
机译:变形虫细胞利用伪足爬行,伪足是细胞表面的凸形延伸。在许多实验室实验中,细胞在光滑的底物上移动,但在野生细胞中可能会遇到其他细胞或死亡物质的障碍,甚至可能在液体中移动。为了了解细胞如何应对异质环境,我们研究了野生型和突变型细胞在底物上移动以及悬浮在液体中时的假足生命周期。我们证明了同一个伪足周期可以提供三种类型的运动,如步行,滑行和游泳。在行走时,伸出的假脚将牢固地粘附在基底上,从而使细胞产生力来绕过障碍物。粘附力受损的突变细胞比野生型细胞在光滑的基底上(滑行)移动得快得多,但不能有效地抵抗提供抵抗力的障碍物。在液体中,游泳时,延伸的假足转变为侧突,侧突迅速移动到细胞的后部。计算表明,这些颠簸提供了足够的阻力,以介导观察到的细胞向前游动。

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