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Actin-like cytoskeleton filaments contribute to cell mechanics in bacteria

机译:肌动蛋白样细胞骨架丝有助于细菌的细胞力学

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摘要

A filamentous cytoskeleton largely governs the physical shape and mechanical properties of eukaryotic cells. In bacteria, proteins homologous to all three classes of eukaryotic cytoskeletal filaments have recently been discovered. These proteins are essential for the maintenance of bacterial cell shape and have been shown to guide the localization of key cell-wall-modifying enzymes. However, whether the bacterial cytoskeleton is stiff enough to affect the overall mechanical rigidity of a cell has not been probed. Here, we used an optical trap to measure the bending rigidity of live Escherichia coli cells. We find that the actin-homolog MreB contributes nearly as much to the stiffness of a cell as the peptidoglycan cell wall. By quantitatively modeling these measurements, our data indicate that the MreB is rigidly linked to the cell wall, increasing the mechanical stiffness of the overall system. These data are the first evidence that the bacterial cytoskeleton contributes to the mechanical integrity of a cell in much the same way as it does in eukaryotes.
机译:丝状细胞骨架在很大程度上决定着真核细胞的物理形状和机械性能。在细菌中,最近发现了与所有三类真核细胞骨架细丝同源的蛋白质。这些蛋白质对于维持细菌细胞的形状是必不可少的,并且已被证明可以指导关键细胞壁修饰酶的定位。但是,细菌的细胞骨架是否足够硬以影响细胞的整体机械刚度,尚未进行探究。在这里,我们使用光阱来测量活大肠杆菌细胞的弯曲刚度。我们发现,肌动蛋白同源MreB对细胞刚度的贡献几乎与肽聚糖细胞壁一样大。通过对这些测量进行定量建模,我们的数据表明MreB与细胞壁刚性连接,从而增加了整个系统的机械刚度。这些数据是细菌细胞骨架以与真核生物几乎相同的方式促进细胞机械完整性的第一个证据。

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