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Effects of oriC relocation on control of replication initiation in Bacillus subtilis

机译:口腔迁移对枯草芽孢杆菌复制起始控制的影响

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In bacteria, DNA replication initiation is tightly regulated in order to coordinate chromosome replication with cell growth. In Escherichia coli, positive factors and negative regulatory mechanisms playing important roles in the strict control of DNA replication initiation have been reported. However, it remains unclear how bacterial cells recognize the right time for replication initiation during the cell cycle. In the Gram-positive bacterium Bacillus subtilis, much less is known about the regulation of replication initiation, specifically, regarding negative control mechanisms which ensure replication initiation only once per cell cycle. Here we report that replication initiation was greatly enhanced in strains that had the origin of replication (oriC) relocated to various loci on the chromosome. When oriC was relocated to new loci further than 250?kb counterclockwise from the native locus, replication initiation became asynchronous and earlier than in the wild-type cells. In two oriC-relocated strains (oriC at argG or pnbA, 25?° or 30?° on the 36?° chromosome map, respectively), DnaA levels were higher than in the wild-type but not enough to cause earlier initiation of replication. Our results suggest that the initiation capacity of replication is accumulated well before the actual time of initiation, and its release may be suppressed by a unique DNA structure formed near the native oriC locus.
机译:在细菌中,DNA复制引发被紧密调节,以便与细胞生长坐标复制。报道,在大肠杆菌中,已经报道了在严格控制DNA复制启动中发挥重要作用的阳性因素和负调节机制。然而,它仍然尚不清楚细菌细胞如何认识到在细胞周期期间复制启动的正确时间。在革兰氏菌枯草芽孢杆菌中,关于复制引发的调节,特别是关于阴性对照机制的规定,其仅仅是确保每种细胞循环一次的作用。在这里,我们认为复制启动在具有复制起源(ORIC)的菌株中大大提高了染色体上的各种基因座的菌株。当ORIC被重新定位到从本机轨迹逆时针逆时针进一步迁移到新的基因座,复制启动比在野生型电池中变得异步和更早。在两个oric-reocated菌株(在Argg或pnba,25Ω·染色体地图上,25Ω°或30?°),DNAA水平高于野生型但不足以导致早期的复制启动。我们的结果表明,在原始启动时间之前,复制的起始能力良好,并且可以通过在原生矿原子附近形成的独特DNA结构来抑制其释放。

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