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Three-dimensional structure of the Z-ring as a random network of FtsZ filaments

机译:Z形环的FtsZ细丝随机网络的三维结构

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The spatial organization of the Z-ring, the central element of the bacterial division machinery, is not yet fully understood. Using optical tweezers and subpixel image analysis, we have recently shown that the radial width of the Z-ring in unconstricted Escherichia coli is about 100 nm. The relatively large width is consistent with the observations of others. Moreover, simulation of the experimental FtsZ distribution using the theoretical three-dimensional (3D) point spread function was strongly in favour of a toroidal rather than a thin cylindrical model of the Z-ring. Here, we show that the low density of FtsZ filaments in the ring coincides within experimental uncertainty with the critical density of a 3D random network of cylindrical sticks. This suggests that the Z-ring may consist of a percolating network of FtsZ filaments. Several factors that are expected to affect the polymerization state and the extent of self-interaction of FtsZ within the Z-ring, as well as the functional implications of its sparse toroidal structure, are discussed in terms of percolation theory.
机译:Z形环是细菌分裂机制的核心要素,其空间组织尚未完全了解。使用光镊和亚像素图像分析,我们最近发现,在未收缩的大肠杆菌中Z环的径向宽度约为100 nm。相对较大的宽度与其他人的观察一致。此外,使用理论上的三维(3D)点扩展函数对实验FtsZ分布进行仿真,强烈支持Z形环的环形而不是薄的圆柱模型。在这里,我们显示出环中FtsZ细丝的低密度在实验不确定性内与圆柱棒的3D随机网络的临界密度一致。这表明Z形环可能由FtsZ细丝的渗滤网络组成。根据渗流理论讨论了预期会影响Z环内FtsZ的聚合状态和自相互作用程度的几个因素,以及其稀疏的环形结构的功能含义。

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