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Exploration of cell division times during bacterial cytokinesis

机译:细胞分裂时间探讨细胞分裂时间

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Filamenting temperature-sensitive mutant Z (FtsZ), an essential cell division protein in bacteria, has recently emerged as an important and exploitable antibacterial target. The perturbation of FtsZ assembly is found to have an effect on cell cytokinesis and cell survival. Cell division time is an important physical parameter in cell cytokinesis. Here, the theoretical framework that has been developed by combining a phase field model for rod-shaped cells with a kinetic description for FtsZ ring maintenance is extended to explore cell division times during bacterial cytokinesis. The cell division times of around 72 s in the numerical studies have the same magnitude as the division time of several minutes observed physiologically. The dependence of the cell division time on parameters such as the initial state of rod-shaped cells and various kinetic rates of FtsZ assembly dynamics is thoroughly investigated. The theoretical analysis of the relations between the cell division time and these parameters is found to coincide well with the numerical calculated results.
机译:细胞温度敏感突变体Z(FTSZ)是细菌中的必需细胞分裂蛋白,最近成为一个重要和可利用的抗菌靶标。发现FTSZ组件的扰动是对细胞细胞因子和细胞存活的影响。细胞划分时间是细胞细胞因子中的重要物理参数。这里,通过将具有动力学描述的杆状细胞与用于FTSZ环维性的动力学描述的相结合而开发的理论框架被延长以探讨细菌细胞因子期间的细胞分裂时间。数值研究中大约72秒的细胞分割时间具有与生理学上观察到的分割时间相同的幅度。细胞划分时间对诸如棒状电池的初始状态的参数以及FTSZ组装动力学的各种动力速率的参数的依赖性得到了彻底研究。发现细胞划分时间与这些参数之间的关系的理论分析与数值计算结果相一致。

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