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Growing an actin gel on spherical surfaces.

机译:在球形表面上生长肌动蛋白凝胶。

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摘要

Inspired by the motility of the bacteria Listeria monocytogenes, we have experimentally studied the growth of an actin gel around spherical beads grafted with ActA, a protein known to be the promoter of bacteria movement. On ActA-grafted beads F-actin is formed in a spherical manner, whereas on the bacteria a "comet-like" tail of F-actin is produced. We show experimentally that the stationary thickness of the gel depends on the radius of the beads. Moreover, the actin gel is not formed if the ActA surface density is too low. To interpret our results, we propose a theoretical model to explain how the mechanical stress (due to spherical geometry) limits the growth of the actin gel. Our model also takes into account treadmilling of actin. We deduce from our work that the force exerted by the actin gel on the bacteria is of the order of 10 pN. Finally, we estimate from our theoretical model possible conditions for developing actin comet tails.
机译:受单核细胞增生性李斯特氏菌细菌运动的启发,我们已通过实验研究了肌动蛋白凝胶在嫁接有ActA(已知是细菌运动启动子的蛋白质)的球形小球周围的生长。在ActA移植的珠子上,F-肌动蛋白以球形形式形成,而在细菌上,则产生了F-肌动蛋白的“彗星状”尾巴。我们实验表明,凝胶的固定厚度取决于珠子的半径。此外,如果ActA表面密度太低,则不能形成肌动蛋白凝胶。为了解释我们的结果,我们提出了一个理论模型来解释机械应力(由于球形几何形状)如何限制肌动蛋白凝胶的生长。我们的模型还考虑了肌动蛋白的跑步。从我们的工作中我们得出结论,肌动蛋白凝胶对细菌的作用力约为10 pN。最后,我们从理论模型中估算出可能产生肌动蛋白彗星尾巴的条件。

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