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A checkpoint control orchestrates the replication of the two chromosomes of Vibrio cholerae

机译:检查点控制协调霍乱弧菌两条染色体的复制

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Bacteria with multiple chromosomes represent up to 10% of all bacterial species. Unlike eukaryotes, these bacteria use chromosome-specific initiators for their replication. In all cases investigated, the machineries for secondary chromosome replication initiation are of plasmid origin. One of the important differences between plasmids and chromosomes is that the latter replicate during a defined period of the cell cycle, ensuring a single round of replication per cell. Vibrio cholerae carries two circular chromosomes, Chr1 and Chr2, which are replicated in a well-orchestrated manner with the cell cycle and coordinated in such a way that replication termination occurs at the same time. However, the mechanism coordinating this synchrony remains speculative. We investigated this mechanism and revealed that initiation of Chr2 replication is triggered by the replication of a 150-bp locus positioned on Chr1, called crtS. This crtS replication–mediated Chr2 replication initiation mechanism explains how the two chromosomes communicate to coordinate their replication. Our study reveals a new checkpoint control mechanism in bacteria, and highlights possible functional interactions mediated by contacts between two chromosomes, an unprecedented observation in bacteria.
机译:具有多条染色体的细菌最多占所有细菌种类的10%。与真核生物不同,这些细菌使用染色体特异的引发剂进行复制。在所有调查的案例中,次级染色体复制起始的机制都是质粒来源的。质粒和染色体之间的重要区别之一是,后者在细胞周期的确定时间内复制,从而确保每个细胞进行一轮复制。霍乱弧菌带有两个环形染色体Chr1和Chr2,它们以与细胞周期良好协调的方式复制,并以使得复制终止同时发生的方式进行协调。但是,协调这种同步的机制仍然是推测性的。我们研究了这种机制,并揭示了Chr2复制的启动是由位于Chr1上的150 bp位点(称为crtS)的复制触发的。这种由crtS复制介导的Chr2复制起始机制解释了两条染色体如何通信以协调其复制。我们的研究揭示了细菌中新的检查点控制机制,并强调了由两个染色体之间的接触介导的可能的功能相互作用,这在细菌中是前所未有的。

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