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The MinE ring required for proper placement of the division site is a mobile structure that changes its cellular location during the Escherichia coli division cycle

机译:正确放置分割地点所需的MinE环 是一种移动结构,在移动过程中会更改其蜂窝位置 大肠杆菌分裂周期

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摘要

Placement of the division site at midcell in Escherichia coli requires the MinE protein. MinE acts by imparting topological specificity to the MinCD division inhibitor, preventing the inhibitor from acting at the midcell site while permitting it to block division at other unwanted sites along the length of the cell. It was previously shown that MinE assembled into a ring structure that appeared to be localized near midcell, apparently explaining the ability of MinE to specifically counteract MinCD at midcell. We report here that the MinE ring is not fixed in position near midcell but is a dynamic structure that undergoes a repetitive cycle of movement first to one cell pole and then to the opposite pole. Taken together with studies of the dynamic behavior of the MinD protein, the results suggest that the topological specificity of division site placement may not involve a localized action of MinE to counteract the MinCD division inhibitor at midcell but rather the ability of MinE to move the division inhibitor away from midcell and to the cell poles.
机译:将分裂位点放置在大肠杆菌的中层细胞中需要MinE蛋白。 MinE通过向MinCD分裂抑制剂赋予拓扑特异性来发挥作用,从而防止抑制剂作用于中细胞位点,同时允许其阻止沿细胞长度分布的其他不需要位点的分裂。先前已证明MinE组装成环状结构,似乎位于中细胞附近,这显然解释了MinE特异性抵消MinCD在中细胞中的能力。我们在这里报告MinE环不是固定在中细胞附近的位置,而是一种动态结构,该结构先经历一个重复的运动周期,即先移动到一个细胞极,然后再移动到相反的极。结合对MinD蛋白动态行为的研究,结果表明,分裂位点位置的拓扑特异性可能不涉及MinE的局部作用以抵消MinCD分裂抑制剂在中细胞的活动,而是MinE移动分裂的能力。抑制剂远离中细胞进入细胞两极。

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