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Assembly Dynamics of FtsZ Rings in Bacillus subtilis and Escherichia coli and Effects of FtsZ-Regulating Proteins

机译:枯草芽孢杆菌和大肠杆菌中FtsZ环的组装动力学和FtsZ调节蛋白的影响

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摘要

FtsZ is the major cytoskeletal component of the bacterial cell division machinery. It forms a ring-shaped structure (the Z ring) that constricts as the bacterium divides. Previous in vivo experiments with green fluorescent protein-labeled FtsZ and fluorescence recovery after photobleaching have shown that the Escherichia coli Z ring is extremely dynamic, continually remodeling itself with a half time of 30 s, similar to microtubules in the mitotic spindle. In the present work, under different experimental conditions, we have found that the half time for fluorescence recovery of E. coli Z rings is even shorter (∼9 s). As before, the turnover appears to be coupled to GTP hydrolysis, since the mutant FtsZ84 protein, with reduced GTPase in vitro, showed an ∼3-fold longer half time. We have also extended the studies to Bacillus subtilis and found that this species exhibits equally rapid dynamics of the Z ring (half time, ∼8 s). Interestingly, null mutations of the FtsZ-regulating proteins ZapA, EzrA, and MinCD had only modest effects on the assembly dynamics. This suggests that these proteins do not directly regulate FtsZ subunit exchange in and out of polymers. In B. subtilis, only 30 to 35% of the FtsZ protein was in the Z ring, from which we conclude that a Z ring only 2 or 3 protofilaments thick can function for cell division.
机译:FtsZ是细菌细胞分裂机制的主要细胞骨架成分。它形成一个环状结构(Z环),随着细菌分裂而收缩。先前的绿色荧光蛋白标记的FtsZ的体内实验和光漂白后的荧光恢复显示,大肠杆菌Z环极具动态性,在30 s的半时间内持续重塑,类似于有丝分裂纺锤体中的微管。在目前的工作中,在不同的实验条件下,我们发现大肠杆菌Z环的荧光恢复的半衰期甚至更短(〜9 s)。如前所述,营业额似乎与GTP水解有关,因为在体外具有降低的GTPase的突变FtsZ84蛋白的半衰期延长了约3倍。我们也将研究扩展到枯草芽孢杆菌,发现该物种表现出同样快速的Z环动力学(一半时间,约8 s)。有趣的是,FtsZ调节蛋白ZapA,EzrA和MinCD的无效突变对装配动力学的影响很小。这表明这些蛋白质不直接调节FtsZ亚基交换进出聚合物。在枯草芽孢杆菌中,只有30%到35%的FtsZ蛋白在Z环中,由此我们可以得出结论,只有2或3个原丝厚的Z环可以用于细胞分裂。

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