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首页> 外文期刊>Nature Communications >Cell shape-independent FtsZ dynamics in synthetically remodeled bacterial cells
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Cell shape-independent FtsZ dynamics in synthetically remodeled bacterial cells

机译:合成改造细菌细胞中与细胞形状无关的FtsZ动力学

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FtsZ is the main regulator of bacterial cell division. It has been implicated in acting as a scaffolding protein for other division proteins, a force generator during constriction, and more recently, as an active regulator of septal cell wall production. FtsZ assembles into a heterogeneous structure coined the Z-ring due to its resemblance to a ring confined by the midcell geometry. Here, to establish a framework for examining geometrical influences on proper Z-ring assembly and dynamics, we sculpted Escherichia coli cells into unnatural shapes using division- and cell wall-specific inhibitors in a micro-fabrication scheme. This approach allowed us to examine FtsZ behavior in engineered Z-squares and Z-hearts. We use stimulated emission depletion (STED) nanoscopy to show that FtsZ clusters in sculpted cells maintain the same dimensions as their wild-type counterparts. Based on our results, we propose that the underlying membrane geometry is not a deciding factor for FtsZ cluster maintenance and dynamics in vivo.
机译:FtsZ是细菌细胞分裂的主要调节剂。它被认为可以充当其他分裂蛋白的支架蛋白,收缩过程中的力量产生者,并且最近还可以作为间隔细胞壁产生的活性调节剂。 FtsZ组装成Z形环的异质结构,因为它类似于由中孔几何形状限定的环。在这里,为了建立一个框架,以检查对适当的Z形环组装和动力学的几何影响,我们在微细加工方案中使用分裂和细胞壁特异性抑制剂将大肠杆菌细胞雕刻为不自然的形状。这种方法使我们能够检查工程Z平方和Z心中的FtsZ行为。我们使用激发发射耗尽(STED)纳米显微镜来显示雕刻细胞中的FtsZ簇与野生型对应簇保持相同的尺寸。根据我们的结果,我们建议潜在的膜几何形状不是FtsZ簇维持和体内动力学的决定因素。

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