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The mechanics of FtsZ fibers

机译:FtsZ纤维的力学

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Inhibition of the Fts family of proteins causes the growth of long filamentous cells, indicating that they play some role in cell division. FtsZ polymerizes into protofilaments and assembles into the Z-ring at the future site of the septum of cell division. We analyze the rigidity of GTP-bound FtsZ protofilaments by using cryoelectron microscopy to sample their bending fluctuations. We find that the FtsZ-GTP filament rigidity is κ=4.7±1.0×10 -27 Nm 2, with a corresponding thermal persistence length of lp=1.15±0.25 μm, much higher than previous estimates. In conjunction with other model studies, our new higher estimate for FtsZ rigidity suggests that contraction of the Z-ring may generate sufficient force to facilitate cell division. The good agreement between the measured mode amplitudes and that predicted by equipartition of energy supports our use of a simple mechanical model for FtsZ fibers. The study also provides evidence that the fibers have no intrinsic global or local curvatures, such as might be caused by partial hydrolysis of the GTP.
机译:Fts家族蛋白的抑制导致长丝状细胞的生长,表明它们在细胞分裂中起一定作用。 FtsZ聚合成原丝,并在未来细胞分裂隔膜的位置组装成Z环。我们通过使用低温电子显微镜分析其弯曲波动来分析GTP结合的FtsZ原型丝的刚度。我们发现FtsZ-GTP灯丝的刚度为κ= 4.7±1.0×10 -27 Nm 2,相应的热持久长度lp = 1.15±0.25μm,远高于先前的估计。结合其他模型研究,我们对FtsZ刚度的更高的新估计表明Z形环的收缩可能会产生足够的力来促进细胞分裂。测得的模态振幅与能量均分预测的良好一致性支持了我们对FtsZ光纤使用简单的机械模型。该研究还提供了证据,表明纤维没有固有的整体或局部曲率,如可能是由GTP的部分水解所引起的。

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