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Dynamic assembly of MinD into filament bundles modulated by ATP phospholipids and MinE

机译:将MinD动态组装为受ATP磷脂和MinE调节的细丝束

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摘要

Accurate positioning of the division septum at the equator of Escherichia coli cells requires a rapid oscillation of MinD ATPase between the polar halves of the cell membrane, together with the division inhibitor MinC, under MinE control. The mechanism underlying MinD oscillation remains poorly understood. Here, we demonstrate that purified MinD assembles into protein filaments in the presence of ATP. Incubation with phospholipid vesicles further stimulates MinD polymerization. Addition of purified MinE in the presence of lipids promotes bundling of MinD filaments as well as their disassembly through activation of MinD ATPase. MinE thus provokes a net decay in the steady-state MinD polymer mass. Taken together, our results suggest that reversible MinD assembly modulated by MinE underlies the dynamic processing of positional information in E. coli to identify precisely the nascent site for cell division.
机译:在大肠杆菌细胞的赤道处准确定位分裂间隔需要在MinE的控制下,在分裂的细胞膜的两半极之间快速分裂MinD ATPase,并与分裂抑制剂MinC一起振荡。关于MinD振荡的机制仍然知之甚少。在这里,我们证明了纯化的MinD在ATP存在下组装成蛋白丝。与磷脂囊泡一起孵育进一步刺激MinD聚合。在脂质存在下添加纯化的MinE会促进MinD细丝的捆扎,并通过激活MinD ATPase来分解它们。因此,MinE引起稳态MinD聚合物质量的净衰减。两者合计,我们的结果表明,由MinE调节的可逆MinD装配是对大肠杆菌中位置信息进行动态处理的基础,以精确地识别新生的细胞分裂位点。

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