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首页> 外文期刊>The European physical journal, E. Soft matter >A stochastic model for dynamics of FtsZ filaments and the formation of Z-ring
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A stochastic model for dynamics of FtsZ filaments and the formation of Z-ring

机译:FTSZ细丝动力学的随机模型及Z形环的形成

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Understanding the mechanisms responsible for the formation and growth of FtsZ polymers and their subsequent formation of the Z-ring is important for gaining insight into the cell division in prokaryotic cells. In this work, we present a minimal stochastic model that qualitatively reproduces in vitro observations of polymerization, formation of dynamic contractile ring that is stable for a long time and depolymerization shown by FtsZ polymer filaments. In this stochastic model, we explore different mechanisms for ring breaking and hydrolysis. In addition to hydrolysis, which is known to regulate the dynamics of other tubulin polymers like microtubules, we find that the presence of the ring allows for an additional mechanism for regulating the dynamics of FtsZ polymers. Ring breaking dynamics in the presence of hydrolysis naturally induce rescue and catastrophe events in this model irrespective of the mechanism of hydrolysis.
机译:了解负责FTSZ聚合物的形成和生长的机制及其随后形成Z形环对于获得原核细胞中的细胞分裂的洞察力是重要的。 在这项工作中,我们提出了一种最小的随机模型,其定性再现聚合的体外观察,形成动态收缩环的形成,其长时间和FtSZ聚合物长丝所示的扩聚化。 在这种随机模型中,我们探索了戒断和水解的不同机制。 除了水解之外,众所周知,该方法除了像微管等其他小管蛋白聚合物的动力学外,我们发现环的存在允许另外的机制来调节FTSZ聚合物的动态。 戒断水解存在下的动态自然地诱导该模型中的救援和灾难事件,而不论水解机制如何。

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