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枯草芽孢杆菌营养生长细胞中细胞分裂Z环从动态螺旋结构形成的新组装途径。

A new assembly pathway for the cytokinetic Z ring from a dynamic helical structure in vegetatively growing cells of Bacillus subtilis.

作者信息

Peters Phoebe C, Migocki Margaret D, Thoni Carola, Harry Elizabeth J

机构信息

Institute for the Biotechnology of Infectious Diseases, University of Technology, Sydney, NSW 2007, Australia.

出版信息

Mol Microbiol. 2007 Apr;64(2):487-99. doi: 10.1111/j.1365-2958.2007.05673.x.

Abstract

The earliest event in bacterial cell division is the formation of a Z ring, composed of the tubulin-like FtsZ protein, at the division site at midcell. This ring then recruits several other division proteins and together they drive the formation of a division septum between two replicated chromosomes. Here we show that, in addition to forming a cytokinetic ring, FtsZ localizes in a helical-like pattern in vegetatively growing cells of Bacillus subtilis. FtsZ moves rapidly within this helix-like structure. Examination of FtsZ localization in individual live cells undergoing a single cell cycle suggests a new assembly mechanism for Z ring formation that involves a cell cycle-mediated multistep remodelling of FtsZ polymers. Our observations suggest that initially FtsZ localizes in a helical pattern, with movement of FtsZ within this structure occurring along the entire length of the cell. Next, movement of FtsZ in a helical-like pattern is restricted to a central region of the cell. Finally the FtsZ ring forms precisely at midcell. We further show that another division protein, FtsA, shown to interact with FtsZ prior to Z ring formation in B. subtilis, also localizes to similar helical patterns in vegetatively growing cells.

摘要

细菌细胞分裂的最早事件是在细胞中部的分裂位点形成一个由微管蛋白样FtsZ蛋白组成的Z环。然后这个环招募其他几种分裂蛋白,它们共同驱动在两条复制染色体之间形成分裂隔膜。我们在此表明,除了形成细胞分裂环外,FtsZ在枯草芽孢杆菌的营养生长细胞中以螺旋状模式定位。FtsZ在这种螺旋状结构内快速移动。对经历单个细胞周期的单个活细胞中FtsZ定位的研究表明,Z环形成存在一种新的组装机制,该机制涉及FtsZ聚合物的细胞周期介导的多步重塑。我们的观察结果表明,最初FtsZ以螺旋模式定位,FtsZ在该结构内的移动沿着细胞的整个长度发生。接下来,FtsZ以螺旋状模式的移动被限制在细胞的中央区域。最后,FtsZ环精确地在细胞中部形成。我们进一步表明,另一种分裂蛋白FtsA,在枯草芽孢杆菌中Z环形成之前已显示与FtsZ相互作用,在营养生长细胞中也定位于类似的螺旋模式。

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